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  • Articles  (109)
  • 42.60  (109)
  • Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics  (109)
  • Energy, Environment Protection, Nuclear Power Engineering
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  • Articles  (109)
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  • Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics  (109)
  • Energy, Environment Protection, Nuclear Power Engineering
  • Physics  (356)
  • 1
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    Applied physics 20 (1979), S. 251-253 
    ISSN: 1432-0630
    Keywords: 78.20 ; 42.60
    Source: Springer Online Journal Archives 1860-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics , Physics
    Notes: Abstract The spherical aberration observed in the far-field diffraction pattern of a He−Ne laser beam traversing a silica plate locally heated by a CO2-laser is investigated. This leads to a thermooptical method suitable to evaluate the effective derivative of the refractive index and elastooptical method suitable to evaluate the effective derivative of the refractive index and elastooptical coefficient.
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  • 2
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    Applied physics 18 (1979), S. 421-424 
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    Keywords: 42.60 ; 78.60
    Source: Springer Online Journal Archives 1860-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics , Physics
    Notes: Abstract The spatial-spectral characteristics of superluminosity of a high-pressure N 2 + laser have been studied both theoretically and experimentally. The observed characteristics are explained by using the concepts on emission of a thermal source that is limited in time and space.
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  • 3
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    Applied physics 19 (1979), S. 181-184 
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    Keywords: 42.60
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    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics , Physics
    Notes: Abstract For frequency stabilization of a cw dye laser a very fast reacting piezo mirror translator with 350 kHz lowest resonance frequency has been developed. If it is driven by appropriate control electronics it allows to suppress efficiently fast frequency changes of the jet stream dye laser. The remaining frequency jitter is 270 kHz rms for full-bandwidth detection; it drops to a few kHz if a filter time constant of 100 μs is used.
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  • 4
    ISSN: 1432-0630
    Keywords: 68.55 ; 42.60 ; 82.50
    Source: Springer Online Journal Archives 1860-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics , Physics
    Notes: Abstract A theoretical analysis of and experimental observations on a parallel incident laser-induced deposition rate are reported. Our theory predicts that the maximum deposition rate depends on the photo-traveling length, the scattering cross section of the reactant gases and their partial pressure. This result is applied to SiO2 deposition using monosilane and nitrous oxide for reactant gases, and is compared with experimental results. We show that the deposition rate of SiO2 films as a function of the incident light power and the partial pressure of reactant gases predicted by the present theory well explains our experimental results. A supply-limitation phenomenon of the reactant gases and a method of estimating deposition efficiencies are also discussed.
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  • 5
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    Applied physics 40 (1986), S. 235-239 
    ISSN: 1432-0630
    Keywords: 42.60 ; 81.30 ; 82.65
    Source: Springer Online Journal Archives 1860-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics , Physics
    Notes: Abstract The laser-induced etching of ceramic PbTi1−xZrxO3 in a hydrogen atmosphere and in air has been investigated. Visible Ar+ and Kr+ laser radiation was employed in most of the experiments. In H2 atmosphere, regular patterning of the ceramic is possible. Average etch rates reach up to about 250 μm/s.
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  • 6
    ISSN: 1432-0630
    Keywords: 42.70 ; 42.60 ; 61.80 ; 68.20
    Source: Springer Online Journal Archives 1860-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics , Physics
    Notes: Abstract We report on experimental data of chemical compounds formed in the damaged area at the surface of certain optical ZnSe windows subjected to multi-pulse microsecond pulsed TEA-CO2 laser irradiation in air. The results are analysed from the viewpoint of implication of the oxidation process activated under the action of CO2-laser power in plasma initiation and evolution of surface damage process.
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  • 7
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    Applied physics 40 (1986), S. 29-36 
    ISSN: 1432-0630
    Keywords: 42.60 ; 64 ; 68.20 ; 81.10
    Source: Springer Online Journal Archives 1860-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics , Physics
    Notes: Abstract This paper deals with selfsustaining crystallization processes, the so-called explosive crystallization, in silicon produced by short temperature pulses. By this, crystalline Si layers can be generated on amorphous substrates, e.g. on SiO2, at which liquid and solid-state crystallization processes can take place. Emphasis will be given to the liquid-phase explosive crystallization processes. Here, the transformation of amorphous into crystalline silicon occurs through two coupled laterally moving interfaces, amorphous-liquid and liquid-crystalline. Using an experimental equipment existing of 3 synchronized lasers supplying the temperature pulse for the ignition, the spreading out and stopping of the laterally moving interfaces, in connection with time-resolved measurements of the reflectivity by a laser test beam, information about the characteristic parameters as the velocity of the process, the crystallized area and the course of the crystallization front will be obtained. The crystalline structure was investigated by optical and transmission-electron micrography. The main results are: the crystallization fronts move radially from the ignition point with a velocity of about 15 m/s, crystalline laminae grow preferentially in 〈110〉 direction over a distance of more than 100 μm, areas of some millimeters in diameter can be crystallized and the quality of the crystallized layers essentially depends on the “amorphousness” of the virgin layer and the preparation method. The experimental results are in good agreement with theoretical predictions.
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  • 8
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    Applied physics 47 (1988), S. 313-316 
    ISSN: 1432-0630
    Keywords: 81.60 ; 82.65 ; 42.60
    Source: Springer Online Journal Archives 1860-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics , Physics
    Notes: Abstract The processes leading to the control of the lateral dimension of laser-assisted oxidation of Zn films on glass are examined. It is shown that it is determined by negative feedback between temperature and optical absorption.
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  • 9
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    Applied physics 47 (1988), S. 377-386 
    ISSN: 1432-0630
    Keywords: 81.60 ; 82.65 ; 42.60
    Source: Springer Online Journal Archives 1860-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics , Physics
    Notes: Abstract Laser-induced chemical etching of (100) Si in Cl2 atmosphere has been investigated using a combined laser-beam irradiation scheme. 308 nm XeCl excimer laser radiation at parallel incidence has been used to exclusively generate Cl atoms in the gas phase above the Si surface. Additionally, 647.1 nm Kr+ laser radiation at perpendicular incidence has been used to exclusively generate photocarriers within the Si surface. The Cl atom concentration was determined — independently — from both the observed chemiluminescence following the Cl-Cl atom recombination, and from numerical calculations. The etch rateW observed on the Si surface was found to be directly proportional to the Cl atom concentration in the gas phase, and it increases sublinearly with the Kr+ laser powerP according toW∞P 0.7.
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  • 10
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    Applied physics 62 (1996), S. 77-82 
    ISSN: 1432-0630
    Keywords: 42.60 ; 81.60
    Source: Springer Online Journal Archives 1860-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics , Physics
    Notes: Abstract The direct laser writing of graduation lines in Cr thin films on glass substrates has been investigated. The Nd-YAG laser and the astigmatic optical system have been used to write rectangular holes in the Cr film. The optimal writing parameters: the laser pulse energy, the Cr layer thickness and the substrate-objective distance were determined using the optoacoustic probe beam deflection method to detect the evaporation of the material. The evaporation is concluded to be the essential process in the laser writing of graduation lines. The rims formed by the surface tension gradient at the hole edges indicate that the laser writing of graduation lines is a typical two-phase removal process.
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  • 11
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    Applied physics 10 (1976), S. 187-188 
    ISSN: 1432-0630
    Keywords: 42.60 ; 06
    Source: Springer Online Journal Archives 1860-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics , Physics
    Notes: Abstract Precise frequencies of far infrared (FIR-) laser lines of HCOOH, CH3OH, CH3I, CH3F have been measured by comparison with harmonics of frequency-locked mm-wave klystrons.
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  • 12
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    Applied physics 11 (1976), S. 47-53 
    ISSN: 1432-0630
    Keywords: 42.60
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    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics , Physics
    Notes: Abstract The laser-light field is shown to undergo a discontinuous order transition at the threshold for mode-locked pulses, accompanied by critical fluctuations below the transition point. These observations confirm theoretical predictions from the laser equations for a simplified model when incoherent interaction is included.
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  • 13
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    Applied physics 11 (1976), S. 203-205 
    ISSN: 1432-0630
    Keywords: 42.60
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    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics , Physics
    Notes: Abstract The decay rate of2 D 5/2 level of Cd II has been measured by the magnetic-field power-dip method. The decay rate at the zero-pressure limit is found to be 2.4·106s−1. The calculated collision cross section for excited Cd ions with He atoms equals 0.91·10−15 cm2.
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  • 14
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    Applied physics 12 (1977), S. 31-37 
    ISSN: 1432-0630
    Keywords: 42.60 ; 72.20
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    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics , Physics
    Notes: Abstract A simple theory is presented for the laser-induced damage in semiconductors in the range of low irradiation intensities. This theory avoids the solution of coupled differential equations, and takes into account characteristic physical properties of semiconductors—i.e. energy gap, carrier lifetime, and surface recombination velocity. The deduced equations permit us to estimate the damage threshold, or the minimum irradiation time required for damage to occur. Comparison is made with some experimental results reported in the literature and a reasonable agreement is found.
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  • 15
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    Applied physics 11 (1976), S. 357-361 
    ISSN: 1432-0630
    Keywords: 42.60 ; 61.20
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    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics , Physics
    Notes: Abstract Planar dye lasers in isotropic and anisotropic media are described. Isotropic structures supporting real modes are considered as well as leaky modes. The anisotropic structure is obtained with an oriented liquid crystal which can be made to lase in both the nematic and smectic phase.
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  • 16
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    Applied physics 13 (1977), S. 267-269 
    ISSN: 1432-0630
    Keywords: 42.60 ; 82.50
    Source: Springer Online Journal Archives 1860-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics , Physics
    Notes: Abstract P-terphenyl in cyclohexane, has been pumped by a KrF laser in a longitudinal configuration. Dye laser pulses of 11 mJ, 1 MW were obtained with over 10% conversion efficiency. N2 purge of the dye solution is shown to increase the conversion efficiency. The tuning curve between 321.8 nm and 365.3 nm is presented.
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  • 17
    ISSN: 1432-0630
    Keywords: 42.60 ; 52
    Source: Springer Online Journal Archives 1860-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics , Physics
    Notes: Abstract Relativistic self-focusing causes a shrinking of laser beams in high density plasmas down to one wavelength diameter within a penetration depth approximately equal to the diameter of the initial beam in vacuum before the plasma interaction. Values of electron densities near cut-off cause a swelling and an increase of the actual wavelength in the focused volume. Both mechanisms are evaluated for the relevant laser intensities below and above the relativistic threshold. The result of McCall et al., a wavelength independence of electron oscillation energies, is derived from short-range self-focusing; in addition, the illustration of GeV ion generation, with magnitudes linearly increasing with respect to the ion chargeZ I and laser intensityI, is also made.
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  • 18
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    Applied physics 13 (1977), S. 209-210 
    ISSN: 1432-0630
    Keywords: 42.60 ; 66 ; 78.20
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    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics , Physics
    Notes: Abstract Spatially periodic temperature distributions were induced in ruby by superimposing two light waves of a Q-switched, frequency doubled Nd: YAG laser. The amplitude and decay time of the resulting thermal phase grating was measured by diffraction of an argon laser beam. Experimental results are compared with solutions of the heat conduction equation.
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  • 19
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    Applied physics 11 (1976), S. 167-170 
    ISSN: 1432-0630
    Keywords: 78.30 ; 42.60
    Source: Springer Online Journal Archives 1860-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics , Physics
    Notes: Abstract The absolute Raman scattering cross-sections of three Neodymium-doped glasses have been measured. These cross-sections have been used to determine the nonlinear optical susceptibility tensor of the three glasses. We have estimated the relative contributions of the “electronic” and “nuclear” nonlinearities to self-focusing index for linearly polarized light in these glasses. We have also performed numerical computations of the Hibert transform of our Raman scattering cross-sections, which are useful in the prediction of any other nonlinear effects.
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  • 20
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    Applied physics 12 (1977), S. 1-14 
    ISSN: 1432-0630
    Keywords: 78.20 ; 42.60
    Source: Springer Online Journal Archives 1860-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics , Physics
    Notes: Abstract The spin-flip Raman (SFR) laser is shown to be an excellent tool to investigate different processes in the conduction band of the SFR laser crystal itself. For the case ofn-InSb, intracavity spectroscopy of inter-Landau transitions is demonstrated to be much more sensitive than conventional transmission spectroscopy. Data on cyclotron harmonic transitions, both free and LO-phonon assisted, are obtained from the output power characteristics of the SFR laser versus magnetic field. The spin-splitting energy and the effectiveg-factor up to 14 T are derived from the SFR laser frequency. The influence of temperature on SFR laser power, threshold and frequency is investigated. The relaxation following the SFR laser pulse is observed in the electrical conductivity. This yields in a direct way the spin-lattice relaxation time at high magnetic fields, which is of the order of 200 ns.
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  • 21
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    Applied physics 12 (1977), S. 55-58 
    ISSN: 1432-0630
    Keywords: 42.60 ; 82.50
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    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics , Physics
    Notes: Abstract High-power stimulated radiation was obtained in three fluorides of rare gases by exciting a high pressure mixture of He+R+SF6 (R is argon, krypton, xenon) by a pulse electric discharge (mixture pressure ranged from 1 to 10 atm). The ArF laser superradiance spectrum of about 15 Å total width with the centre at λ=1932 Å is given. The ArF laser power wasP≈104 W. The KrF laser generated 2 ns pulses of about 2.5 MW power at λ=2486 Å with a linewidth Δλ≈10 Å. This laser efficiency in relation to the stored energy of an accumulator is about 0.2%. In the XeF laserP=200 to 300 kW, τ=3 to 3.5 ns, λ=3511, 3531 Å. High density of superradiance power is observed. The prospects of increase of mean power of excimer lasers are discussed.
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  • 22
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    Applied physics 12 (1977), S. 69-74 
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    Keywords: 42.60
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    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics , Physics
    Notes: Abstract A tunable, very narrow bandwidth, flashpumped dye laser is described. Publse energies up to 50 mJ at a bandwidth of less than 30 MHz, and with a divergence of 0.4 mrad, are obtained. Spectral narrowing and tuning is achieved by injection locking of the pulsed laser to the radiation, of a tunable cw dye laser. The cavity is designed for single longitudinal and transverse mode operation, with a mode diameter large enough to fill the active medium.
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  • 23
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    Applied physics 24 (1981), S. 331-340 
    ISSN: 1432-0630
    Keywords: 06.60 ; 42.60 ; 42.80
    Source: Springer Online Journal Archives 1860-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics , Physics
    Notes: Abstract A full-automatic wavelength controled pulsed dye laser has been developed. With the control system, dye laser oscillations of nanosecond pulses are tuned to any wavelength in the visible or scanned in any sweep mode keeping the nearly transform-limited bandwidth of 0.45 GHz. A mechanical tuning of the wavelength is employed, such that the motion of three wavelength selectors is synchronized to give a smooth and precise wavelength control. The basic principle underlying the tuning scheme, various requirements to be met in system construction, and the practical performance of automatic wavelength control are described in this paper.
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  • 24
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    Applied physics 21 (1980), S. 199-204 
    ISSN: 1432-0630
    Keywords: 42.60 ; 42.65
    Source: Springer Online Journal Archives 1860-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics , Physics
    Notes: Abstract Coherent infrared radiation tunable between 1.6 and 3.2 μm was generated with a pulsed dye laser by 6s−5d 5/2 stimulated electronic Raman scattering in caesium vapour. We describe a technique using thermal dissociation to reduce the density of caesium dimers in a heat-pipe oven, which produced a factor of 7 reduction in Raman threshold. The threshold displayed a marked dependence on pump bandwidth.
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  • 25
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    Applied physics 21 (1980), S. 237-240 
    ISSN: 1432-0630
    Keywords: 42.55 ; 42.60 ; 34.50
    Source: Springer Online Journal Archives 1860-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics , Physics
    Notes: Abstract Selective single-line oscillation has been obtained from an NH3 laser in the range from 11 to 13 μm. Pumping of high pressure NH3−He mixture with theR(30) line of a TEA-CO2 laser made it possible to tune on more than 30 lines with the aid of a grating. However, such line tunable oscillation was not observed when theR(16) line was used for pumping. Reasons for this difference are discussed.
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  • 26
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    Applied physics 21 (1980), S. 319-321 
    ISSN: 1432-0630
    Keywords: 42.55 ; 42.60
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    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics , Physics
    Notes: Abstract We report the observation that the helical TE N2 laser can effectively be simplified by giving up the use of decoupling elements as well as by abolishing the segmentation of the electrode structure. Although, as a consequence of this simplification, the operating pressure range was slightly decreased, the output power could be improved by roughly 30%, a result which is attributed to the new electrode geometry exhibiting lower inductance and lower damping losses.
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  • 27
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    Applied physics 21 (1980), S. 353-359 
    ISSN: 1432-0630
    Keywords: 42.10 ; 42.60 ; 42.80
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    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics , Physics
    Notes: Abstract Some aspects of the transient behaviour of pulsed dye lasers are investigated both theoretically and experimentally. Relaxation oscillations induced in the output from a dye cell by an external reflector have been observed and explained, using a rate equation approximation to the physical situation in the dye cell. These oscillations are shown to play an important part in the generation of short laser pulses from long cavity dye lasers. Finally, it is proposed that 10 ps pulses can be obtained from conventional dye lasers pumped by 100 ps pulses from a high-pressure nitrogen laser.
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  • 28
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    Applied physics 22 (1980), S. 213-218 
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    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics , Physics
    Notes: Abstract We present periodic solutions, which are described in terms of Jacobian elliptic functions, for the steady state pulses from a laser system consisting of a pair of amplifiers of unequal relaxation time mode locked by a “fast” saturable absorber. The pulsewidth and the average power in the pulse are expressed interms of the system parameters through two different approaches, where detailed plots are given for one of the approaches. Summary of the characters to be possessed by the amplifier pair to ensure the reliable production of shortest possible pulses is given.
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  • 29
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    Notes: Abstract In this paper we describe the construction of a monochromatic and frequency stabilized continuous wave (cw) source in the 5 μm region. It is built up by a cw single line, single-mode frequency and amplitude stabilized CO2 laser. This primary CO2 laser source is then frequency-doubled in a tellurium crystal using second harmonic generation (SHG). The obtained emission is monochromatic (half-width 50 kHz). The frequency can be varied discreetly from 4.6 μm to 5.5 μ depending on the CO2 laser line chosen.
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  • 30
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    Keywords: 42.10 ; 42.60 ; 78.20
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    Notes: Abstract An investigation was made of the self-induced transparency effect in the semiconductor's exciton region using ultrashort frequency-tunable light pulses and an ultrafast streak camera.
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  • 31
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    Applied physics 25 (1981), S. 161-164 
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    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics , Physics
    Notes: Abstract The possibility to use narrow optical resonances and highly stable lasers as detectors of gravitational waves are discussed. The methods for measuring small displacements are based on the registration of small variations of a radiation frequency that arise in changing an optical phase. First results on the use of narrow resonances for precision measurements of small displacements are given. The achieved absolute sensitivity of the measurements amounted to 6·10−6 Å on the basis of 5·102 cm.
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  • 32
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    Applied physics 25 (1981), S. 311-316 
    ISSN: 1432-0630
    Keywords: 07.40 ; 07.60 ; 42.60 ; 42.80
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    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics , Physics
    Notes: Abstract A high precision wavelength meter in the visible is described, which is based on a Fabry-Perot interferometer with several etalons of different resolution. The interference fringe pattern projected on a photo-diode array detector is computationally processed to give a stepwise refinement of the wavelength value to any adjusted accuracy. The present model intends to provide digital and real-time values of high precision wavelength for dye-laser spectroscopy, and to serve as a monitor or as a pilot for wavelength control of a dye-laser source of nanosecond pulses. The model is, therefore, designed with particular emphasis on its short-pulse capability and on-line mode of operation as well as on its high sensitivity and resolution. Some arrangements of essential necessity are involved therein, such as to avoid an errorneous wavelength readout for a noisy incidence of pulsed field. The ultimate accuracy of wavelength measurement is prescribed by the resolving power of the thickest etalon employed. As applied to the pulsed source, the model determines the wavelength to the accuracy of ±one part in 107 for even a single shot nanosecond incidence of a fraction of μJ energy. The design and performance are described in connection to pulsed dye-laser incidence.
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  • 33
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    Applied physics 31 (1983), S. 71-74 
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    Keywords: 42.60 ; 61.80 ; 78.50
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    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics , Physics
    Notes: Abstract By annealing Si layers amorphised by ion-implantation with a cw CO2 laser beam in oxygen rich environments, it has been possible to incorporate O atoms into the recrystallized lattice. Absorption measurements on such regrown layers by infrared spectrometry have shown that the impurities are preferentially bonded into substitutional lattice sites, rather than existing interstitially. Supplementary RHEED studies have indicated thatβ-cristobalite, a crystalline form of SiO2, has been formed. These investigations highlight the importance of the ambient during cw laser annealing.
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  • 34
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    Applied physics 45 (1988), S. 289-292 
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    Keywords: 42.60 ; 82.65 ; 73.40
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    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics , Physics
    Notes: Abstract Although polymethyl methacrylate (PMMA) is essentially transparent to light of 308 or 351 nm, it can be made sensitive to photoablation and etching by excimer laser pulses (20 ns half-width) of those wavelengths by the introduction of an organic dopant. The dopant (trade name=Tinuvin*) is actually a quencher of the first electronic excited state of PMMA and is therefore used commercially to stabilize the polymer against photodegradation. Laser etching of Tinuvin-doped PMMA can be shown to be a photochemical process in which the Tinuvin decomposes by the absorption of two or more photons and causes the ablation of the surrounding polymer.*[2-(2′-hydroxy-3′,5′-diisopentyl-phenyl) benzotriazole].
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  • 35
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    Applied physics 45 (1988), S. 301-304 
    ISSN: 1432-0630
    Keywords: 42.60 ; 82.50N ; 85.30
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    Notes: Abstract KrF laser etching of GaAs in Cl2 and O3 gas ambients by direct laser illumination is reported. The etch depth per pulse in Cl2 was found to be linear versus the laser fluence on the sample in the 0.2–1.1 J/cm2 range. It increased as a function of the Cl2 pressure up to 6 Torr and slightly decreased for pressures above this value. It also decreased as a function of the laser repetition rate. Very smoothly etched surfaces were obtained after irradiation using the Cl2 and O3 etching gases. Auger analysis of the etched GaAs surfaces shows almost no traces of chlorine after etching in Cl2, whereas a thick oxide layer of about 1500 Å thickness was found after etching in ozone.
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  • 36
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    Applied physics 45 (1988), S. 293-299 
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    Keywords: 81.60 ; 82.65 ; 42.60
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    Notes: Abstract Laser-induced chemical etching of single-crystalline (100) Si in Cl2 atmosphere has been investigated for continuous Ar+ and Kr+ laser irradiation at around 351 nm, and at 457.9, 488.0, 514.5, and 647.1 nm. For laser irradiances below 105 W/cm2 the etching mechanism is non-thermal, and is based on photo-generated electron-hole pairs within the Si surface and Cl atoms produced within the gas phase. The experimental results are compared with model calculations.
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  • 37
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    Applied physics 46 (1988), S. 331-334 
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    Keywords: 74.70V ; 42.60 ; 82.65
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    Notes: Abstract Investigations on the laser-induced oxidation of YBa2Cu3O6 are presented. Here, the oxygen content of the material is locally increased by laser-induced heating under cw Ar+ or Kr+ laser irradiation in 02 atmosphere. The technique permits direct-writing of superconducting patterns into the semiconducting sample surface.
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  • 38
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    Applied physics 46 (1988), S. 285-290 
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    Keywords: 42.60 ; 81.10 ; 85.40
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    Notes: Abstract Microscopic ohmic contacts are made by laser chemical vapor deposition of platinum on a Pyrex substrate. The electrical conductivity of the deposited metal stripes is measured as a function of the laser power, the writing speed, and the organometallic vapor pressure. The latter appears to be the key parameter for producing contacts with low resistance at high writing speeds. Even on these transparent substrates there is no apparent advantage in using light at 350 nm, where photolysis may in principle play a significant role, over using visible light where photolysis is not effective.
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  • 39
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    Applied physics 46 (1988), S. 331-334 
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    Keywords: 74.70V ; 42.60 ; 82.65
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    Notes: Abstract Investigations on the laser-induced oxidation of YBa2Cu3O6 are presented. Here, the oxygen content of the material is locally increased by laser-induced heating under cw Ar+ or Kr+ laser irradiation in O2 atmosphere. The technique permits direct-writing of superconducting patterns into the semiconducting sample surface.
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  • 40
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    Applied physics 49 (1989), S. 189-197 
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    Keywords: 42.60 ; 81.10 ; 82.65
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    Notes: Abstract The photolytic laser chemical vapor deposition (LCVD) rate of platinum from its bishexafluoroacetylacetonate precurser has been measured in situ and in real time. Optical transmission of the 350 nm photolysis light through the deposited platinum film and a transparent glass substrate is monitored and analysed in detail. From these measurements, as well as measurements of the reflected light, the fraction of the laser beam power absorbed in the metal film is found. The latter allows a simple estimate of the laser-induced temperature rise at the metal surface. It is shown that even rather small temperature increases of the order of several tens of degrees centigrade can completely change the photolysis mechanism and hence drastically influence the photolytic LCVD rate. A simple modification of Lax's model, in which a temperature dependent thermal conductivity of the substrate is introduced, is used to describe the laser-induced heating of a strongly absorbing thin metal film on a glass substrate.
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  • 41
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    Applied physics 48 (1989), S. 527-541 
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    Keywords: 74.70 ; 42.60 ; 81.10
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    Notes: Abstract The use of lasers in the formation and surface processing of high-temperature superconductors (HTS) is reviewed. Presently, thin film fabrication by reactive laser sputtering, and surface patterning by laser-induced reduction/metallization and ablation are the most promising applications. The great majority of the investigations have been performed for Y-Ba-Cu-O.
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  • 42
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    Applied physics 54 (1992), S. 363-368 
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    Keywords: 42.60 ; 42.70 ; 81.40
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    Notes: Abstract Ablation of fused silica using standard excimer lasers (20–30 ns pulse duration at 193, 248, and 308 nm) and a short pulse laser system (500 fs at 248 nm) is reported. Ablation rates range from several hundred nm/pulse (193 nm or fs-laser) up to about 6 μm/pulse (308 nm). The performance of the ablation is found to depend not only on wavelength and pulse duration but also on the existing or laser induced surface quality (e.g., roughness) of the material. Special ablation phenomena are observed. At 193 nm and moderate fluence (3 J/cm2) ablation takes place at the rear side of a plate without affecting the front side, whereas at higher fluence normal ablation at the front side occurs. At 248 nm (standard excimer) the existence of two consecutive ablation phases is observed: smooth ablation at low rate is followed by explosive ablation at high rate. Using fs-pulses smooth shaped holes are formed during the first pulses, whereas high pulse numbers cause the development of a ripple structure in the ablation craters. The results lead to the conclusion that two different ablation mechanisms are involved: the first is based on two photon bulk absorption, the second on controlled surface damage in relation with (partially laser induced) singularity conditions at the surface.
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  • 43
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    Applied physics 55 (1992), S. 119-120 
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    Keywords: 42.60 ; 61.40 ; 68.35
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    Notes: Abstract The formation of nap-type and wall-type structures on laser-irradiated polyimide (PI) films is reported for the first time. These investigations demonstrate that such structures can develop on non-melting polymer surfaces.
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  • 44
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    Applied physics 55 (1992), S. 269-273 
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    Keywords: 42.60 ; 82.65 ; 73.40
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    Notes: Abstract Continuous wave laser radiation from an argonion laser in the wavelength range 275–330 nm can be used to etch polyethylene terephthalate (PET) films with as little thermal damage as from a pulsed, ultraviolet laser (248 nm or 308 nm) provided the beam is focussed to a spot of 10–100 kW/cm2 of power density and is moved over the surface at speeds at which the transit time over its own diameter (which can be looked upon as a “pulse width”) is on the order of 10–200 μs. In contrast to results which had been obtained previously on the photokinetic etching of polyimide and doped polymethyl methacrylate films under similar conditions, the sensitivity of PET to etching is 〉5-fold greater than either of these polymers and increases steadily with increasing pulse width. There is lateral thermal damage as the pulse widths increase to 〉200 μs. The material that is removed is vaporized in part. More than 20% is probably ejected in a molten state and resolidifies at the edge of the cut. There is no acoustic report similar to that seen in ablative photodecomposition. The process appears to be largely thermal in nature.
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  • 45
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    Applied physics 60 (1995), S. 411-417 
    ISSN: 1432-0630
    Keywords: 42.20 ; 42.60 ; 81.60.Dq
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    Notes: Abstract The uv laser-ablation behavior of various oxide ceramics (Al2O3, MgO, ZrO2) has been studied using different wavelengths (248 nm, 308 nm) and pulse durations (30 ns, 500 fs). Time-resolved absorption measurements of the sample and the ablation plume during ablation were performed. Using sub-ps pulses the ablation threshold fluence is generally lower than for ns pulses; the ablation rate is higher in the whole investigated fluence range up to 20 J/cm2. The study of the morphology of the ablation structures and the results of the absorption experiments lead to the conclusion that different ablation mechanisms are involved. Using ns pulses “plasma mediated ablation” is dominating, whereas in the fs case the process is controlled by multi-photon absorption enabling microstructuring of the material.
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  • 46
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    Keywords: 42.60 ; 78.90
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    Notes: Abstract The time course of laser light induced transport of tungsten films from a glass support is followed by ultrafast photography using delayed dye laser pulses. The photographs provide unambiguous evidence that the material transport in the 40–200 mJ/cm2 intensity domain takes place via removal of solid pieces from the film material. These results are consistent with heat flow calculations which predict the overall melting of the metal layer above 380 mJ/cm2. The series of photographs presented give detailed insight into the melting process and have revealed an unexpected in-flight phase separation of solid fracture pieces and molten droplets throughout the 200–900 mJ/cm2 domain. The faster propagating molten droplets form a condensed halo in front of the solid pieces, thereby providing an efficient shield between the processing laser light and the solid phase.
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  • 47
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    Applied physics 62 (1996), S. 197-202 
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    Keywords: 91.60 ; 82.40 ; 42.60
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    Notes: Abstract The process of oxide removal in crystalline Ge using a pulsed ultraviolet laser has been studied by means of real-time reflectivity measurements with nanosecond resolution. The interaction of laser radiation with a clean, oxide-free surface has been characterized and the inhomogeneous and homogeneous energy density melting thresholds of c-Ge for 193 nm radiation have been determined. The values are 180 and 370 mJ/cm2, respectively. We have demonstrated that it is possible to remove an oxide overlayer by irradiation in vacuum and to produce a surface that shows the same response to laser radiation as a smooth, oxide-free, chemically cleaned surface. Under certain specific irradiation conditions it is even possible, after removing the oxide overlayer, to produce an enhanced crystalline quality in the near-surface region compared to that obtained upon chemical cleaning as evidenced by Rutherford backscattering/channeling measurements.
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  • 48
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    Applied physics 63 (1996), S. 505-508 
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    Keywords: 42.60 ; 81.40Z ; 81.60Z
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    Notes: Abstract Ablation of submicron structures on copper and silicon by short ultraviolet laser pulses (0.5–50 ps, 248 nm) is presented. Features like periodic line structures with a line-spacing below 400 nm, and holes with characteristic sizes well below 1 µm are produced on the sample surface by single laser shot exposure. The structures are projection printed by a Schwarzschild-objective (N.A.=0.4) in air environment. The morphology of ablation sites made with different pulse durations (0.5 ps, 5 ps, 50 ps) is discussed in terms of thermal diffusion effects.
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  • 49
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    Applied physics 11 (1976), S. 75-79 
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    Keywords: 42.60 ; 32
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    Notes: Abstract The observation of a new type of resonance due to double-quantum transitions in the standing-wave field of a Raman gas laser is reported. A resonance dip with a width equal to that of the optically forbidden transition was experimentally detected in the output-vs-timing curve of a Raman Ne laser (λ=1.15 m) upon pumping by radiation of a He−Ne laser at 1.52 m. The theory presented shows that the resonance arises in the third order of perturbation theory when in resonant SRS the line is inhomogeneously broadened. The resonance can be considered as resulting from the overlap of dips in the velocity distribution of the nonlinear polarization induced by the standing laser wave.
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  • 50
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    Applied physics 11 (1976), S. 107-120 
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    Keywords: 32 ; 42.60
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    Notes: Abstract The general probe absorption coefficient derived in Part I is specialized to homogeneous- and inhomogeneous-broadening limits and illustrated as the dipole lifetime is increased from 0 to values comparable to the level lifetimes. This progression reveals the relation between pulsation dips of the short-dipole lifetime limit and the dynamic Stark effect in general. Interpretations of the coherent interactions involved are given in terms of modulator and Raman effects and of dressed atoms. The single-probe unidirectional pulsation dip is shown to be a special case of the grating dip in which the fringe spacing becomes infinite. Analogies with three-level systems are given in which both two and three-level cases are seen to obey an “equal-area theorem”, and to involve level crossing. Some comparison is made with corresponding spectroscopy in which spontaneous emission provides the probe radiation.
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  • 51
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    Applied physics 12 (1977), S. 209-210 
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    Keywords: 42.60 ; 78.60
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    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics , Physics
    Notes: Abstract Dynamic characteristics of semiconductor lasers are calculated with single-mode rate equations, taking into account spontaneous emission factor β and bias current
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  • 52
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    Applied physics 15 (1978), S. 47-51 
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    Keywords: 42.60 ; 82.20 ; 66.70
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    Notes: Abstract The appearance of craters is discussed, which are observed at the surface of propellant solids after laser pulse heating. The discussion is based on the three-dimensional heat flow equation and an infinitesimal short heat source. The experimental crater dimensions are correlated with the laser pulseenergy and the pyrolysis temperature of the solids.
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  • 53
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    Applied physics 15 (1978), S. 371-375 
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    Keywords: 42.60 ; 42.80
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    Notes: Abstract A single-mode dye laser is described in which a “double Michelson” mode selector is used instead of intracavity Fabry-Perot systems. This simple device gives a lower threshold, a high single-mode power (≳250 mW), and a good geometrical quality of the laser beam. Synchronous pressure scanning of the cavity and the mode selector frequencies makes it possible to continuously sweep the optical frequency over 40 GHz without any difficulty. Another version, in which one mirror of the “double Michelson” has been replaced by a retroreflecting optical grating, is also reported. In this case, no selective element (Lyot filter, wedge, ...) has to be inserted in the laser cavity.
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  • 54
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    Applied physics 12 (1977), S. 317-320 
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    Keywords: 42.60
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    Notes: Abstract The input power density and hence the output power of electrically excited gasdynamic lasers is limited by instabilities of the glow discharge. The application of theoretical results, which have been obtained with respect of convection or flow lasers, to the discharge region of an electrically excited gasdynamic CO-laser shows, that especially thermal instabilities cause this glow collapse. An increased convection of local heat concentrations in front of the anode surface results in an improved stability behaviour. Input power densities of up to 100 W/cm3 are now accessible to operate the glow discharge and hence specific laser output powers of 57 kJ/kg are obtained.
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  • 55
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    Notes: Abstract A new approach to laser isotope separation is considered. It is based on collisionless multiple photon ir laser excitation and subsequent uv laser dissociation of vibrationally excited molecules. TEA CO2 and excimer XeF, XeCl lasers are used for ir excitation and uv dissociation, respectively. The products of photolysis (C2F6) are enriched with12C.
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  • 56
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    Applied physics 19 (1979), S. 225-229 
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    Keywords: 42.60 ; 32
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    Notes: Abstract We investigate the problem of nonlinear interaction of a gas of three-level atoms with the field of standing waves in the situation where the atomic free path length at the initial and final metastable levels is comparable with the transverse dimensions of the field. The standing waves are resonant to adjacent Doppler-broadened transitions. The case of fields of Gaussian profile is analysed. It has been shown that in the limiting case of large free path length the nonlinear resonance width is of the order of the inverse time of flight of an atom in the field. The first and second derivatives of resonance with respect to frequency are considered. It has been shown that in the situation of flight they contain narrow resonant structures with a width of the order of a homogeneous width of the forbidden transition between metastable levels.
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  • 57
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    Applied physics 20 (1979), S. 67-73 
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    Keywords: 42.60 ; 85.60
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    Notes: Abstract Intensity self-pulsation in cw semiconductor lasers has been analyzed by computer simulation assuming saturable absorbing characteristics in the loss term of the rate equation. A loss decrease of about 1% due to the saturable absorber is capable of generating self-pulsation. The theoretical pumping dependence of the self-pulsation frequency is consistent with the experimental data. Reflected light in the range of 10−5∼10−3 reduces the self-pulsation. Reflected light of larger than 10−2, however, induces self pulsation whose frequency is locked with the round trip time. The contribution of spontaneous emission in the range of 10−4∼10−3 also reduces the self-pulsation, while 10−6∼10−5 is ineffective.
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  • 58
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    Applied physics 24 (1981), S. 65-66 
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    Keywords: 42.72.+h ; 42.55.Fn ; 42.60
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    Notes: Abstract A simple method for stabilizing a He-Xe laser, which simultaneously operates at two wavelengths of 3.51 μm and 3.37 μm, is described. This stabilization method depends on the comparison of the light intensities of the two wavelengths, and has a possibility of realizing a stability of better than 1×10−8 with unmodulated output.
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  • 59
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    Applied physics 41 (1986), S. 331-334 
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    Keywords: 82.65 ; 42.60 ; 81.30
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    Notes: Abstract Hot pressed, optically transparent ferroelectric ceramics of lanthanum modified lead zirconate titanate (PLZT) have been locally reduced and metallized by means of ultraviolet Kr+ laser irradiation in a hydrogen atmosphere. The technique allows maskless single-step metallic patterning of the material.
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  • 60
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    Notes: Abstract A cw CO2 laser, coupled with an astigmatism free beam focussing mirrors arrangement is used for processing a brittle plastic, CR-39 without producing cracks, vents or chips. The processing is based on the formation of volatile products of laser-induced decomposition in the plastic. Threshold fluence for the decomposition (found to be independent of the power density and beam residence time) in CR-39 atλ=10.6μm is determined to be 25 J cm−2 and the decomposition threshold power density for cw irradiation 2.1±0.5 W cm−2. The depth and width of the tapered laser processed region are observed to increase with power density and beam residence time. The widths attain a steady state value of ∼ 1 mm at beam residence time above 65 ms, for a fixed power density (2.5×104 W cm−2) and sheet thickness (250 μm). Taper angle of the edges decreases with increasing power density and/or beam residence time. The heat affected zone (measured in crossed polarisers) around the processed region is found to extend with increasing beam residence time but remains unaffected on changing power density. The results are discussed in terms of the optical and thermophysical properties of CR-39 and the parameters of the interacting laser beam.
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  • 61
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    Notes: Abstract The laser chemical vapor deposition of platinum from its bishexafluoroacetylacetonate derivative is studied with a cw argon ion laser at 458 and 514 nm. The height, the width, as well as the electrical conductivity of the deposited stripes are reported as a function of the vapor pressure of the metalorganic precurser, the laser intensity, and the writing speed.
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  • 62
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    Applied physics 45 (1988), S. 313-316 
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    Keywords: 42.60 ; 74 ; 82.65
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    Notes: Abstract The first investigations on the laser-induced reduction of YBa2Cu3O7−x are presented. Here, the oxygen content of the material is diminished by local heating under cw Kr+ laser irradiation in H2 atmosphere. The technique permits the superconducting properties of the material to be locally changed or destroyed. Laser-induced surface metallization may be useful for the electroding of such materials.
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  • 63
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    Applied physics 45 (1988), S. 355-360 
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    Keywords: 81.10 ; 68.55 ; 42.60
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    Notes: Abstract Diamond-like carbon thin films were prepared by pulsed-laser evaporation. In this method a carbon target was irradiated by a XeCl laser with a power density of 3×108 W/cm2 and carbon atoms, together with a small number of ions, were produced. Deposition rates and film properties changed sensitively with substrate temperature. The films deposited at 50°C were diamond-like, having reasonable hardness, high refractive index (2.1–2.2 at 633 nm), optical transparency in the infrared, electrical resistivity of 108 Ω cm and chemical inertness (no dissolution in a HF∶HNO3 solution). The band gap measured from optical absorption was 1.4 eV. Raman spectrum and infrared absorption, whose features varied with the substrate temperature, were also measured. The films were amorphous and no crystallinity was observed, as confirmed by x-ray diffraction, transmission electron diffraction and Raman spectroscopy. Hydrogen atoms were incorporated in the films with a typical H/C ratio of 0.3. The application of a negative bias to the substrate modified the deposition due to the presence of ions.
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    Applied physics 45 (1988), S. 337-343 
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    Keywords: 42.60 ; 81.10 ; 82.65
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    Notes: Abstract The rate of cwphotolytic laser chemical vapor deposition (LCVD) of platinum is measured for λ≈350 nm as a function of the light intensity and the metalorganic vapor pressure. The growth of the metal films is studied in situ and in real time by monitoring their optical transmission. At low intensities the transmitted light decreases monotonically with time, and the LCVD process is photolytic with its rate limiting step in the surface adlayer. At higher intensities we observe two distinct time domains: Relatively slow initial photolytic deposition with its rate limiting step in the gas phase, which is followed by much faster pyrolytic LCVD. An improved method for distinguishing between adlayer and gas-phase limiting processes is demonstrated. These observations are confirmed by studying the photolytic deposition rates while varying the thickness of the adlayer.
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    Applied physics 48 (1989), S. 273-276 
    ISSN: 1432-0630
    Keywords: 07.20 ; 42.60 ; 44.50 ; 78.55
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    Notes: Abstract A phosphor with temperature-dependent lifetime has been used to measure the temperature distribution produced by laser heating of a thin film surface. A gold thin film deposited on a quartz substrate is coated with ∼40 μm film of the phosphor material. A cw argon ion laser (476 nm) beam is split into two beams, with the more intense beam focused to 15 μm (1/e2 radius) to heat the film through the quartz substrate. The weaker probe beam is chopped and focused tightly using a microscope objective to excite the phosphor from the other side. The spatial variation in lifetime, and hence the temperature distribution, is obtained by scanning the probe beam over the heated region. The temperature distribution measured for different film thickness's is compared with calculations using a finite element model. The calculated temperatures at the gold surface near the laser beam are higher than the experimentally measured values, and agree only when the heat-sinking effect of the phosphor material is taken into account. The results suggest that a phosphor layer thinner than a micron will be required (for 15 μm laser spot size) so as not to perturb the temperature of the gold layer.
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  • 66
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    Applied physics 49 (1989), S. 221-223 
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    Keywords: 74.70 ; 42.60 ; 81.10
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    Notes: Abstract Superconducting films of Bi-Sr-Ca-Cu-O on (100) MgO substrates have been fabricated by XeCl-excimer-laser sputtering from ceramic targets of Bi2.5Sr2Ca2Cu3Oy in O2 atmosphere. The films were polycrystalline with the c-axis (30.80±0.02Å) preferably oriented normal to the substrate surface. Without post-annealing the films showed metallic resistance behavior with zero resistance temperatures of up to Tc(0) }- 79 K. The critical current density of the films had values of up to jc(50K)}- 104 A/cm2.
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  • 67
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    Applied physics 50 (1990), S. 131-139 
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    Keywords: 81.60 ; 82.65 ; 42.60
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    Notes: Abstract The present status of experimental and theoretical work on continuous wave laser-assisted reaction of metals with oxygen is presented. Differences between this and normal isothermal oxidation of metals are emphasized. Available theoretical models are discussed. They deal with roles of thermal history, feedback effects between optical absorption and reaction rate. The nature of so-called “non-purely thermal” effects is discussed. Hints for further research are presented.
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  • 68
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    Applied physics 55 (1992), S. 391-392 
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    Keywords: 42.60 ; 61.40 ; 68.55
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    Notes: Abstract The adhesion-force of thin metal films on PET foils can be significantly improved by UV excimer-laser irradiation of the polymer surface prior to metal deposition. The laser fluences required are well below the ablation threshold.
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  • 69
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    Applied physics 57 (1993), S. 243-247 
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    Keywords: 42.60 ; 42.80 ; 42.10
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    Notes: Abstract On the basis of the Helmholtz equation the far-field distribution is derived for double heterostructure lasers. The results show that the far-field distribution in the direction normal to the junction plane approaches a Lorentzian function, but parallel to the junction it may be approximated by a Gaussian function. The far-field intensity patterns have “analogous elliptic” form. It is also shown, for the first time, that the separability condition is not strictly valid for the far-field of a laser diode. Only in the vicinity of the optical axis the field can be expressed as a product of two separate functions, each of which depends only on one of the two transverse coordinates parallel and perpendicular to the diode junction.
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  • 70
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    Notes: Abstract This work deals with the study of a plasma produced by intense XeCl-excimer-laser irradiation of a titanium surface in nitrogen-containing atmospheres. We observed that the optical emission spectra resulting from irradiation of Ti targets in various ambient atmospheres (N2, NH3, N2+H2 mixtures) contain lines of atomic and ionized species of the irradiated target material only. The spectra are almost independent of the ambient atmosphere. The expansion velocities of atomic and ionic species in the plasma plume were obtained by time-of-flight measurements at different distances from the target. Mass spectrometry measurements are also performed at low background pressure to identify non-emitting species.
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  • 71
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    Applied physics 60 (1995), S. 425-429 
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    Keywords: 42.55.Px ; 42.60 ; 85.30
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    Notes: Abstract The electric field distribution in semiconductor lasers are detected experimentally by using CWEOP (Continuous-Wave Electro-Optic Probing). The paper briefly describes the experimental results. The obtained results reflect several characteristics of the lasers such as injection current, carrier confinement, and the variation of the distribution of the electric field corresponding to different bias conditions.
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  • 72
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    Applied physics 63 (1996), S. 337-339 
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    Keywords: 42.60 ; 81.60
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    Notes: Abstract Surface topology changes in polyimide induced by single UV-laser pulses with pulse durations between 140 ns and 5 μs are investigated by means of atomic force microscopy. With increasing fluence three different regimes are found: (a) real material removal (ablation), (b) swelling of the irradiated area above the level of the untreated surface (hump formation) and (c) lowering of the irradiated area below the level of the untreated surface (dent formation). A detailed description of these topology changes is given and different formation processes are discussed.
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    Applied physics 63 (1996), S. 87-90 
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    Keywords: 42.60 ; 81.60
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    Notes: Abstract Single-shot laser ablation of polyimide has been investigated with UV-Ar+-laser radiation (λ = 270-315 nm) for pulse lengths between 140 ns and 5 µs. The irradiated polymer surface was studied with respect to its morphology and ablated depth by means of atomic force microscopy. The dependence of the ablation threshold on laser pulse-length and intensity can be tentatively interpreted on the basis of a thermal process and a (thermal or non-thermal) mechanism which diminishes the activation energy for the desorption of species from the surface.
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  • 74
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    Applied physics 11 (1976), S. 1-33 
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    Keywords: 42.60
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    Notes: Abstract The present article reviews the fundamental physical principles essential to an understanding of waveguide gas and liquid lasers, and the current technological state of these devices. At the present time, waveguide laser transitions span the visible through submillimeter regions of the wavelength spectrum. The introduction discusses the many applications of waveguide lasers and the wide variety of laser configurations that are possible. Section 1 summarizes the properties of modes in hollow dielectric waveguides of circular, rectangular, and planar cross section. Section 2 considers various approaches to optical feedback including internal and external mirror Fabry-Perot type resonators, hollow waveguide distributed feedback structures, and ring-resonant configurations. Section 3 discusses those aspects of molecular kinetic and laser theory pertinent to the design and optimization of waveguide gas lasers such as the scaling laws for discharge-excited gas lasers, molecular models useful in maximizing the oscillation bandwidth, the effects of gas flow rate, and the physics of optically-pumped far-infrared lasers. Finally, a review of the waveguide gas and liquid lasers reported to date is given in Section 4.
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  • 75
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    Applied physics 11 (1976), S. 171-174 
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    Keywords: 42.60 ; 42.65
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    Notes: Abstract Mode-locked operation has been observed in a Q-switched, ruby laser using a quartz crystal as the passvie mode-locking element and a laser cavity length which is a whole fraction of that which is commensurate in mode-frequency spacing with the lowfrequency stimulated Brillouin scattering (lf S BS) in the crystal element. In addition, high-bit-rate operation has been observed, suggesting that the passive modulation of the lf S BS process is sufficiently strong to maintain a fixed-phase relation between several neighboring oscillating modes of the laser.
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  • 76
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    Applied physics 11 (1976), S. 121-130 
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    Keywords: 42.60
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    Notes: Abstract We report on crystal processing, laser fabrication, emission spectra and output characteristics of neodymium pentaphosphate lasers. We obtained cw oscillation with an output power of 19 mW from a crystal with dielectric mirrors directly applied on polished (001) planes. We pumped longitudinally with 280 mW of an argon ion laser at 514 nm focussed to a 94-μm diameter. Near threshold our laser operated in the vicinity of 1053 nm; when pumped 1.6 times threshold it operated dominantly in the vicinity of 1063 nm.
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  • 77
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    Notes: Abstract We have shown that the lasing properties of naphthyl 1,3,4 oxadiazole derivatives are directly related to the position of the forbidden transitionS 0→1 L b of naphthalene with respect to the first allowed transitions. The combination of theoretical and experimental results allows us to predict which compounds are most likely to exhibit a laser effect according to the nature and the position of their substituants. We have successfully applied this approach to the following compounds: αNPD, βNPD, αNND, βNND, βNBD, and αNBD. In particular we reported the first observation of a laser effect for αNBD and βNBD in the UV at 3830 Å and 3758 Å.
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  • 78
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    Notes: Abstract Excitation processes of selected dye vapor-rare gas mixtures pumped by an electron beam have been studied. These experiments revealed the importance of effective collisional electron energy transfer pumping via a dense rare gas rather than a radiative energy transfer from an excimer laser gas mixture to achieve population inversion in an organic dye vapor.
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  • 79
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    Applied physics 12 (1977), S. 277-281 
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    Notes: Abstract PbS−PbSe−PbS double-heterostructure lasers have been pulse-operated at about 200 K mounted on 4 stage thermoelectric coolers. Emitting at a wavelength of about 5.5 μm they could be used for NO gas spectroscopy. Operation temperatures of up to 230 K have been achieved with structures consisting ofn-type PbS substrates and epitaxial layers ofn-type PbSe and Tl dopedp-type PbS. The temperature dependence of the threshold current density and the emission wavelength of these DH-lasers was compared with PbSe-homojunction lasers. The use of a germanium etalon for a quick evaluation of the spectral quality of the emitted radiation is described.
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  • 80
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    Applied physics 12 (1977), S. 369-378 
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    Notes: Abstract A model of a regenerative resonance amplifier has been used to describe Fabry-Perot GaAs diode lasers coupled to short external resonators. The optical gain and the equivalent input of the resonance amplifier are controlled by means of appropriate rate equations. Homogeneous line-broadening and proportionality between gain and electron density have been assumed in this approach. The model was applied to a diode laser coupled to an external plane mirror placed at a variable distance from one diode mirror. A numerical evaluation of the coupling coefficient between laser and external cavity enables to predict the measured power output and mode selective properties of the coupled system. A similar analysis was done for diode lasers coupled to external hemispherical resonators. The model calculation confirms the previously demonstrated mode selective properties of the hemispherical configuration which permitted stable single mode operation.
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  • 81
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    Applied physics 12 (1977), S. 387-389 
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    Keywords: 42.60 ; 78.20
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    Notes: Abstract A method is reported which allows the operation of optically pumped farinfrared (FIR) gas lasers in a simple way: A spectrophone is used to control and to stabilize the pump laser frequency in order to achieve most efficient optical pumping of the FIR laser gas.
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  • 82
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    Applied physics 11 (1976), S. 175-177 
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    Keywords: 82.50 ; 42.60
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    Notes: Abstract Trimethylamine and triethylamine are shown to luminesce at their wavelengths of fluorescence when excited by electrical discharge. When excited at low pressures or at high frequencies, a longer wavelength emission is observed at 380 nm. This emission, rather than being due to excimers which are known to exist for some tertiary aliphatic amines, is shown to be due to emission from a decomposition product. Lasing using electrical discharge pumping was attempted, but yielded negative results due to the rapid decomposition. Optical pumping might be successful however, and produce a tunable gas-phase ultraviolet laser
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  • 83
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    Applied physics 15 (1978), S. 257-260 
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    Keywords: 42.60 ; 07.62
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    Notes: Abstract An airborne laser system for remote sensing has been developed and tested at flight altitudes from 500 to 1200 m. The system is based on two continuous-wave CO2 lasers (output 3 W), tunable to different wavelengths, and detects the laser radiation scattered back from earth by heterodyne reception. The feasibility of the heterodyne reception technique under aircraft environment conditions was demonstrated, and man-made SF6 clouds and different types of uncovered minerals were traced. The data obtained indicate that the measuring range of the system can be increased to satellite distance by using a larger telescope and a more powerful laser and by reducing the electrical bandwidth.
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    Applied physics 15 (1978), S. 281-286 
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    Keywords: 42.60 ; 42.10
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    Notes: Abstract This paper reports the observation of a well defined radiation mode emitted from a superradiant dye laser pumped by a pulsed nitrogen laser. Beam geometry and spatial coherence of the dye laser are studied in connection with the pumping geometry. It is shown that under favorable pumping conditions most of the excited molecules radiate into the same spatial mode by stimulated emission. The associated mode structure is also calculated based on a model of a properly phased dipole distribution. The calculated emission pattern reproduces the observed far field pattern closely.
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  • 85
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    Applied physics 16 (1978), S. 121-138 
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    Keywords: 32 ; 42.60 ; 84
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    Notes: Abstract The field of radiation emission from electron beams is reviewed with special reference to work related to free-electron lasers. Different schemes of interaction in periodic structures, electromagnetic slow-wave structures, and in transverse confining force are distinguished. Various effects and devices such as traveling wave amplifiers, Smith-Purcell radiators, Cerenkov and bremsstrahlung-free electron lasers, cyclotron resonance masers, coherent bremsstrahlung and channeling radiation are discussed and the differences and relations among them are explained. A simple comprehensive model is developed to describe electron-beam interaction with an electromagnetic wave in periodic electromagnetic structures. The model is general enough to describe both collective and single-electron modes of interaction and quantum mechanical, classical and Fermi degenerate regimes. Simplified expressions are developed for the gain by stimulated emission of radiation and for gain conditions of the Smith-Purcell-Cerenkov type free-electron lasers under conditions of very thin electron beams and infinite interaction length.
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  • 86
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    Notes: Abstract An investigation was made of the peculiarities of propagation of frequencytunable powerful ultrashort light pulses (USLP) in a sample of CdS0,4Se0,6 (77K) under resonance excitation of excitons. The peculiarities of resonance interaction of USLP with the semiconductor may be fairly well explained by the dominant effect of self-induced transparency on excitons.
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  • 87
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    Applied physics 12 (1977), S. 391-393 
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    Notes: Abstract Laser action has been observed due to a Na2 molecule dimer system in a sodium high pressure lamp. The argon-ion laser line at 4880 Å which is very close to the molecular transition $$B^1 \prod _u \to X^1 \Sigma _g^1 $$ at a wavelength of 4879.14 Å was amplified by passing through a small plasma layer near the wall.
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    Applied physics 17 (1978), S. 131-136 
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    Keywords: 42.10 ; 42.60 ; 42.80
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    Notes: Abstract Basic properties are given of the prism anamorphic expander of a Gaussian beam composed of a couple of prisms in tandem. Its shorter overall length for a given expansion, relative ease of optical adjustment, a sharp selection of polarization component, and rather small inclusive dispersion make it an excellent beam expander in a specific laser cavity. The design principle is presented of the prism system with a grating for an anastigmatic optical resonator for a dye laser of narrow linewidth and of short pulse duration.
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    Applied physics 17 (1978), S. 41-44 
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    Notes: Abstract Single-mode operation of a N2-laser-pumped'dye laser has been obtained in a short laser cavity consisting of a diffraction grating used near grazing incidence and an uncoated resonant reflector. The dye laser pulse has a spectral linewidth of 420±30 MHz and a pulse width of 1.1±0.1 ns, giving a time-bandwidth of 0.46±0.07 close to the Fourier transform limit for Gaussian pulse.
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    Applied physics 17 (1978), S. 405-411 
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    Keywords: 42.60 ; 52.40 ; 52.80
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    Notes: Abstract The paper deals with the small-signal behavior and the stability of discharges in narrow capillaries. A theory is presented, which assumes that the time constants of the particle balance and the wall sheath extension determine the small signal behavior of a positive column. The column admittance is used to analyze the stability of an electric circuit typical for a He−Ne waveguide laser discharge. Numerical evaluation shows qualitative agreement of the experimental and the theoretical stability diagrams.
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    Applied physics 18 (1979), S. 217-220 
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    Keywords: 42.60 ; 32
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    Notes: Abstract The effects in separated standing-wave fields that are resonant to adjacent Doppler-broadened transitions of many-level atoms are studied. It is shown that due to coherent transfer, at large distances, of polarization on a forbidden transition between the initial and final metastable levels of atoms in a gas, light emission arises at combination frequencies. It is also shown that a resonance with the width reciprocal to the time of flight between separated fields is available in the Raman scattering and absorption line shapes.
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    Applied physics 20 (1979), S. 283-286 
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    Notes: Abstract The spectral and laser characteristics of 14 CH3-, CF3-, and F-substitutedp-terphenyls have been investigated. 2,2″-dimethyl-p-terphenyl in cyclohexane solution exhibits a shortest tuned laser wavelength of 311.2 nm, thus extending the range of dye laser emission by 1000 cm−1 in the uv. Peak output powers of 1.5 MW and 14% conversion efficiency at 332 nm were obtained under KrF-laser pumping in an untuned cavity.
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    Applied physics 21 (1980), S. 95-114 
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    Keywords: 42.55 ; 42.60
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    Notes: Abstract The development of excimers and excimer lasers are reviewed. The excimers of the noble gases (Xe 2 * , Kr 2 * , Ar 2 * ) and of the noble gas halides (e.g. KrF, XeCl) which, respectively, radiate in the vacuum ultra-violet and ultra-violet regions of the spectrum are described in terms of their structure, spectroscopy and formation kinetics and the methods of pumping, operational characteristics and applications of the lasers are discussed.
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    Applied physics 21 (1980), S. 215-219 
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    Notes: Abstract The temporal coherence function |Γ(τ)| of picosecond pulses from a Nd: YAG laser has been measured by diffraction at a transient grating. The coherence timet c =7 ps is small compared to the pulse widtht p =22 ps but is in correspondence with the spectral bandwidth Δv=12·1010 Hz. The new method for measuring the coherence function |Γ(τ)| is discussed and compared with a previous experiment.
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    Applied physics 23 (1980), S. 253-258 
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    Notes: Abstract The effect of solvents on the gain and the peaks of gain spectra is investigated for rhodamine 6G (R6G) under nitrogen laser pumping. The non-specific solute-solvent interaction for R6G is found to be mainly dispersive. Additional shifts produced for R6G in certain solvents are explained as due to hydrogen bonding. The gain characteristics are interpreted on the basis of the position and overlap of absorption and fluorescence spectra, the quantum yield, the absorption at the pumping wavelength and the refractive index of the solvent. For the solvents studied it is found that R6G has high gain in solvents with low refractive index and high polarity. Amongst the solvents studied the alcohols displayed the highest gain with methanol being the most suitable solvent. The lowest gain amongst the alcohols was with capryllic alcohol which gave a gain that was 69% of that obtained with methanol. Amongst all the solvents studied the lowest gain was with chloroform, being only 34% of the gain in methanol.
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    Applied physics 24 (1981), S. 261-265 
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    Source: Springer Online Journal Archives 1860-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics , Physics
    Notes: Abstract The present paper reports on the first observation of an anomalous Zeeman effect on the hyperfine components of theF 2 (2) line in methane (λ=3.39 μm), on an asymmetry of a nonlinear resonance in the magnetic field due to the influence of recoid, and on measurements of shifts of individual hyperfine components in weak magnetic fields.
    Type of Medium: Electronic Resource
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  • 97
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    Applied physics 32 (1983), S. 159-161 
    ISSN: 1432-0630
    Keywords: 66.30 ; 61.70 ; 42.60
    Source: Springer Online Journal Archives 1860-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics , Physics
    Notes: Abstract The entire sodium ion content of sodiumβ″ alumina (Na1.67Mg0.67Al10.33O17) can be replaced with a variety of lanthanide ions by simple diffusion reactions at moderate temperatures (500–700°C). Lanthanideβ″ alumina crystals are hard, clear, chemically stable, and have well-defined crystal structures. The fluorescence spectrum of Nd3+ inβ″ alumina is similar to that in YAG. The lifetime of the4 F 3/2 state of Nd3+ in completely-exchangedβ″ alumina (350μs at 1021 Nd3+ cm−3) is about 45% longer than in YAG (240μs at 1020Nd3+ cm−3). The lanthanideβ″ aluminas may be of considerable interest as new phosphor and laser host materials.
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  • 98
    ISSN: 1432-0630
    Keywords: 42.60 ; 68.55 ; 61.80
    Source: Springer Online Journal Archives 1860-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics , Physics
    Notes: Abstract New results are reported concerning the vanadium oxidation by cw CO2 laser irradiation in air at atmospheric pressure. Particular emphasis is paid both to the initial stage and the development of the oxidation process under the action of the laser radiation. Some aspects are finally discussed concerning the quantitative theoretical interpretation of the experimentally recorded data.
    Type of Medium: Electronic Resource
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  • 99
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    Springer
    Applied physics 43 (1987), S. 227-232 
    ISSN: 1432-0630
    Keywords: 81.60 ; 82.65 ; 42.60
    Source: Springer Online Journal Archives 1860-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics , Physics
    Notes: Abstract Chemical etching of single-crystalline (100)Si induced by pulsed laser irradiation at 308, 423, and 583 nm has been investigated as a function of the laser fluence and C12 pressure. Without laser-induced surface melting, etching requires Cl radicals which are produced only at laser wavelengths below 500 nm. With low laser fluences (Φ(308 nm)〈100 mJ/cm2) etching is non-thermal and based on direct interactions between photocarriers and Cl radicals. For fluences which induce surface melting (Φ(308 nm)〉440 mJ/cm2) etching is thermally activated. In the intermediate region both thermal and non-thermal mechanisms contribute to the etch rate.
    Type of Medium: Electronic Resource
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  • 100
    Electronic Resource
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    Springer
    Applied physics 47 (1988), S. 103-104 
    ISSN: 1432-0630
    Keywords: 42.60 ; 74 ; 82.65
    Source: Springer Online Journal Archives 1860-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics , Physics
    Notes: Abstract The ablation of ceramic Bi-Ca-Sr-Cu-O by XeCl-excimer-laser projection has been investigated. In both air and vacuum, etching commences at about 2.4 J/cm2 and then increases with fluence within the regime investigated (Φ 〈) 20 J/cm2). At 10 J/cm2 the respective etch rates are around 1 μm/pulse and 1.6 μm/pulse.
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