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  • Articles  (356)
  • 42.60  (356)
  • Springer  (356)
  • Physics  (356)
  • 1
    ISSN: 1432-0649
    Keywords: 42.55 ; 42.60 ; 52.90
    Source: Springer Online Journal Archives 1860-2000
    Topics: Physics
    Notes: Abstract A radiofrequency excited atomic Xe slab laser with an active volume of 2 × 10 × 300 mm3 using a quartz envelope containing the laser-gas mixture shows a stable cw performance with an output power of almost 1 W. The free-running system oscillates, depending on gas composition and density, on several lines between 1.73 and 3.51 μm. Line competition phenomena are observed. Single-line oscillation yields more than 500 mW.
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  • 2
    ISSN: 1432-0649
    Keywords: 42.60 ; 42.90
    Source: Springer Online Journal Archives 1860-2000
    Topics: Physics
    Notes: Abstract We report on some interesting aspects of the strong influence of the unexcited vapour zone inside a heatpipe on the observation of 366.6 and 380.0 nm UV diffuse bands of sodium. For a smaller unexcited sodium vapor zone, only the 366.6 nm band is observed, while for larger unexcited volumes, both 366.6 and 380.0 nm bands can be identified. Partial reabsorption of the 366.6 nm band leading to Stokes emission as 380.0 nm band appears most likely. Reduced power dependences observed for the 366.6 nm band, an indication of the Amplified Spontaneous Emission (ASE) nature of the emission, support this analysis. A simple kinetic for the system is discussed. The results are quite general and suggest some caution in the interpretation of the data from a number of Laser-Induced Fluorescence (LIF) experiments currently being reported.
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  • 3
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    Applied physics 62 (1996), S. 375-379 
    ISSN: 1432-0649
    Keywords: 42.60
    Source: Springer Online Journal Archives 1860-2000
    Topics: Physics
    Notes: Abstract The pulse width of a synchronously pumped laser chiefly depends on the available cavity bandwidth and the pump-pulse duration. A functional form of this dependence was suggested in the literature. We present an alternate relation which is supported by analytical and numerical results, as well as by experimental results, obtained by us and by others.
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  • 4
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    Applied physics 62 (1996), S. 381-387 
    ISSN: 1432-0649
    Keywords: 42.60
    Source: Springer Online Journal Archives 1860-2000
    Topics: Physics
    Notes: Abstract The capability of gated saturable absorbers for single-pulse selection is studied theoretically using the classical space-time-dependent rate-equation model. The dynamics of operation is followed experimentally by the well-known pump—probe technique. Comparing the theoretical and experimental results, it is found that gated saturable absorbers can efficiently be used for pulse forming and pulse selection of pulses longer than picosecond.
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  • 5
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    Applied physics 62 (1996), S. 427-430 
    ISSN: 1432-0649
    Keywords: 07.60 ; 07.65 ; 42.60
    Source: Springer Online Journal Archives 1860-2000
    Topics: Physics
    Notes: Abstract Saturated absorption spectroscopy was applied to study the line shape of the molecular iodineX(ν″ = 0,J″ = 13,15) →B(ν′ = 43,J′ = 12, 16) transition (λ = 514.5 nm) in a transversal magnetic field as high as 0.51 T. The Zeeman structure of several hyperfine structure (hfs) components was completely resolved and a detailed study of the second-order Zeeman shift and splitting was made. The anisotropic Magnetic Susceptibility (MS) of the molecular iodine both in theB(43) (X′ = 7.3 ± 1 × 10−34 J/Oe2) and theX(0) [χ″ = (0.6 ± 1) × 10−34 J/Oe2] states as well as the isotropic MS difference [χ′0 −χ″o = (2 ± 0.2) × 10−34 J/Oe2] was measured.
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  • 6
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    Applied physics 62 (1996), S. 357-365 
    ISSN: 1432-0649
    Keywords: 42.55 ; 42.60
    Source: Springer Online Journal Archives 1860-2000
    Topics: Physics
    Notes: Abstract The plasma electrode design concept is applied for the first time to an HF laser. The discharge along the surface of a dielectric (sliding discharge) is used as a plasma cathode for the main laser discharge. The laser operates at atmospheric pressure with a gas mixture of He/SF6/C3H8. Details are presented on the efficiency of energy transfer, the dependence of laser performance on circuit parameters, gas mixture, relative energy loading and time delay between the plasma electrode and main discharges. The F atom production rate is estimated from the linear dependence of the output energy on the electric charge passed through the discharge. Output energies of 600 mJ were obtained at 1.6% efficiency from a small active discharge of 108 cm3 volume and 38 cm length, while the maximum specific input and output energies were 370 J/1 and 5.7 J/1, respectively. These values compare favourably with those reported in the literature for non-chain-reaction-type gas mixtures at 1 atm pressure and demonstrate that the plasma electrode design is a powerful scheme for developing gas-discharge lasers.
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  • 7
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    Applied physics 62 (1996), S. 473-477 
    ISSN: 1432-0649
    Keywords: 42.10 ; 42.60
    Source: Springer Online Journal Archives 1860-2000
    Topics: Physics
    Notes: Abstract We report on optical limiting and z-scan in CS2 as a function of the pulse duration of 10 µm TEA CO2-laser radiation. We present a comprehensive and simple model for the shape of a laser pulse transmitted through this limiting device. For the first time, we propose the use of an optical limiting device for beam shaping.
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  • 8
    ISSN: 1432-0649
    Keywords: 42.55 ; 42.60
    Source: Springer Online Journal Archives 1860-2000
    Topics: Physics
    Notes: Abstract We report a comparative study of a pulsed as well as continuous-wave (cw) injection seeding of a Ti:Sapphire laser pumped by aQ-switched frequency-doubled Nd3+:YAG laser for achieving narrow spectral bandwidth. The results have indicated that the Ti:Sapphire laser using either a pulsed or a cw injection seeding could achieve efficient energy extraction in a narrow spectral bandwidth. In the case of pulsed injection seeding, the injection energy required for the complete injection seeding critically depended upon the timing of the Ti:Sapphire laser with respect to the delayed onset of the slave laser. On the other hand, in the case of cw injection seeding, the spectral bandwidth of the Ti:Sapphire laser was efficiently narrowed down to approximately 0.01 cm−1 with an injection power of less than 1 mW. In both types of injection seeding, characteristics observed experimentally were compared with those obtained by a numerical simulation code based on the one-dimensional rate-equation model.
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  • 9
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    Applied physics 63 (1996), S. 283-292 
    ISSN: 1432-0649
    Keywords: 07.65 ; 42.60 ; 42.80
    Source: Springer Online Journal Archives 1860-2000
    Topics: Physics
    Notes: Abstract Theoretical and experimental results for modulation absorption spectroscopy (with simultaneous amplitude and wavelength modulations) are given, with particular emphasis on the effects of pressure and modulation broadening. As expected, such broadening effects result in a loss of resolution of nearly overlapping lines, whether these are from one or more absorbing species. The effects of phase-sensitive detection at harmonics greater than the commonly used second are investigated. It is shown that when detection is performed at higher harmonics, one is able to counter the loss of resolution due to pressure and modulation broadening. Applications in measurements of congested spectra, and in the simultaneous measurement of more than one species, are discussed. Other general characteristics of signals obtained by using higher-harmonic detection are also discussed, together with corresponding applications.
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  • 10
    ISSN: 1432-0649
    Keywords: 7.65 ; 33.00 ; 42.60 ; 42.65 ; 42.80
    Source: Springer Online Journal Archives 1860-2000
    Topics: Physics
    Notes: Abstract A new widely tunable source in the infrared for use in high-resolution spectroscopy and trace-gas detection is described. This spectroscopic source is based on Difference Frequency Generation (DFG) in gallium selenide (GaSe) and is continuously tunable in the 8.8–15.0 μm wavelength region. Such a DFG source operates at room temperature which makes it a useful alternative to a lead-salt diode-laser- based detection system that requires cryogenic temperatures and numerous individual diode lasers.
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  • 11
    ISSN: 1432-0649
    Keywords: 33.80 ; 42.60
    Source: Springer Online Journal Archives 1860-2000
    Topics: Physics
    Notes: Abstract The absorption of three linesP(30) (1037.4 cm−1),P(36) (1031.5 cm−1) andP(40) (1027.4cm−1) of the pulsed CO2 laser (0001–0200 transition) by SiF4 was examined at various pulse energies, pulse durations, temperatures, optical path lengths and pressures of this compound and several non-absorbing gases. In addition, the low-intensity infrared absorption spectrum of tetrafluorosilane was compared with high-intensity absorption data for all lines of the laser. The experimental dependences demonstrate nonlinear features of the absorption phenomena originating from the high power of the incident radiation and collisions of absorbing molecules with surroundings. These effects are included in the analytical formula, being an extended form of the Lambert-Beer law. which reasonably approximates all experimental data. The importance of the results obtained for understanding general features of multiphoton absorption and for revealing potential applications of SiF4 as a sensitizer for the infrared region is presented in brief.
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  • 12
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    Applied physics 62 (1996), S. 59-64 
    ISSN: 1432-0649
    Keywords: 42.60 ; 42.65 ; 78.30
    Source: Springer Online Journal Archives 1860-2000
    Topics: Physics
    Notes: Abstract To investigate the full conversion of pump power to the Stokes waves in stimulated Raman scattering with a single-pass cell, unconverted pump energies have been analyzed in detail in relation to the first Stokes, second Stokes and first anti-Stokes energies. Adoption of a long focusing configuration with a high-pressure cell was found to be effective but insufficient to suppress the four-wave mixing effect, because a small amount of pump energy always remained undepleted. Comparison of the results using pump beams of various spectral and spatial mode characteristics from alexandrite and Nd:YAG lasers revealed that the spatial mode quality was the most critical parameter for full depletion of a pump pulse.
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  • 13
    ISSN: 1432-0649
    Keywords: 42.55 ; 42.60
    Source: Springer Online Journal Archives 1860-2000
    Topics: Physics
    Notes: Abstract A technique is proposed for injection-seeding control of tunable lasers. It is based on a combination of successive external injection and intracavity self-injection of radiation when the active medium is pumped by dual-step pulses. The technique is tested both experimentally (in the case of Nd:YAG-laser-pumped pulsed dye lasers) and numerically, using a model developed by us. Full conversion of the broadband spectrum into the injected line is achieved for an output energy greater by a factor of about 50 than that managed by means of the traditional injection-seeding technique under identical conditions.
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  • 14
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    Applied physics 62 (1996), S. 241-247 
    ISSN: 1432-0649
    Keywords: 42.55 ; 42.60
    Source: Springer Online Journal Archives 1860-2000
    Topics: Physics
    Notes: Abstract A commercial tunable excimer laser consists of an oscillator-amplifier combination. The oscillator produces high-quality light that is sent to the amplifier and is distributed throughout the amplifier cavity via Cassegrain optics. We describe here two alternative approaches, a “single-pass” configuration for use with KrF and a “triple-pass” configuration with ArF, both of which do away with the Cassegrain optics. In each approach, the beam energy is the same as with Cassegrain optics. For KrF, the changes provide better locking, a higher degree of linear polarization, and a better spatial beam homogeneity, but a poorer beam divergence. For ArF, there is also better beam homogeneity, but the locking efficiency and divergence are not as good as with Cassegrain optics.
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  • 15
    ISSN: 1432-0649
    Keywords: 07.65 ; 42.60 ; 42.80
    Source: Springer Online Journal Archives 1860-2000
    Topics: Physics
    Notes: Abstract We discuss experimental and theoretical results which show that when wavelength-modulation spectroscopy is used to monitor concentration fluctuations of gaseous species, greater sensitivity may be obtained if one uses high-order detection. We also show that, depending on the ambient concentration being monitored, there are regions in which the commonly used second derivative would show a negligible variation of signal magnitude with concentration fluctuations, whereas measurement with a higher harmonic would result in a much improved signal. Theoretical results for the measurements of any transition that can be described by the Voigt profile are given. The technique discussed is illustrated by presenting the results of measurements of wavelength-modulation spectroscopy of lines in the oxygenA band. Different detection harmonic orders are suitable for different ambient concentrations, and a related criterion that helps in the determination of a suitable detection harmonic order is given.
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  • 16
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    Applied physics 63 (1996), S. 585-591 
    ISSN: 1432-0649
    Keywords: 42.55 ; 42.60
    Source: Springer Online Journal Archives 1860-2000
    Topics: Physics
    Notes: Abstract The rotating hollow cylinder glass laser is one of the approaches for the generation of high average output powers scaling to kilowatt levels from solid-state laser materials. An analytical solution of the heat conduction equation is presented for a thin wall, infinitely long glass medium, with boundary conditions given by Newton's law of cooling. The theoretical result is applied to predict thermal effects of this geometry which ultimately limit the laser performance, and the design of such a laser. A flashlamp pumped rotating Nd-doped phosphate glass hollow cylinder laser has been demonstrated. An average power output of 300 W has been achieved at 3.8% slope efficiency and 2.6% overall efficiency. Our investigation shows that the development of a kilowatt average power rotating cylinder laser is feasible.
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  • 17
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    Applied physics 63 (1996), S. 463-466 
    ISSN: 1432-0649
    Keywords: 42.60 ; 42.55.Mv
    Source: Springer Online Journal Archives 1860-2000
    Topics: Physics
    Notes: Abstract We report on the generation of intensities of 1019 W/cm−2 by focusing the output beam of a table-top hybrid dye-excimer laser system operating at 248 nm. The laser system uses a pulsed dye laser and a single, commercially available excimer gain module. Considerations and optical arrangements for the optimization of the phase-front and the beam homogeneity of ultraviolet excimer amplifiers are presented.
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  • 18
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    Applied physics 63 (1996), S. 537-540 
    ISSN: 1432-0649
    Keywords: 42.65 ; 42.60
    Source: Springer Online Journal Archives 1860-2000
    Topics: Physics
    Notes: Abstract We experimentally demonstrate vector phase conjugation in Cr4+:YAG saturable absorber at 1.06μm with nanosecond pulses using degenerate four-wave mixing with linearly-polarized pump beams of arbitrary strengths. The experimental results show that the phase conjugate wave produced by this method can correct depolarisation induced by a birefringent medium.
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  • 19
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    Applied physics 62 (1996), S. 437-442 
    ISSN: 1432-0649
    Keywords: 42.55 ; 42.60
    Source: Springer Online Journal Archives 1860-2000
    Topics: Physics
    Notes: Abstract Under pumping with a 990 nm, 1 W laser diode, continuous-wave (cw) tunable laser emission in the 1.5 µm wavelength range was obtained from two different colour centres: Tl0(1) in NaCl:Tl+ and (F 2 + )H in NaCl:OH−. The results are compared to those recently obtained with a similar apparatus and Tl0(1) centres in KCl:Tl+. The highest output power (30 mW) and the broadest tuning range (1.48–1.68 µm) were achieved with (F 2 + )H centres.
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  • 20
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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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  • 21
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    Applied physics 62 (1996), S. 197-202 
    ISSN: 1432-0630
    Keywords: 91.60 ; 82.40 ; 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 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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  • 22
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    Applied physics 63 (1996), S. 505-508 
    ISSN: 1432-0630
    Keywords: 42.60 ; 81.40Z ; 81.60Z
    Source: Springer Online Journal Archives 1860-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics , Physics
    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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  • 23
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    Applied physics 63 (1996), S. 337-339 
    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 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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  • 24
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    Applied physics 63 (1996), S. 87-90 
    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 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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  • 25
    ISSN: 1432-0649
    Keywords: 42.60
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    Topics: Physics
    Notes: Abstract Multiple-scattering LIDAR return calculations obtained by seven different models for the same specified numerical experiment are compared. This work results from an international joint effort stimulated by the workshop group called MUSCLE for MUltiple SCattering Lidar Experiments. The models include approximations to the radiative-transfer theory, Monte-Carlo calculations, a stochastic model of the process of multiple scattering, and an extension of Mie theory for particles illuminated by direct and scattered light. The model solutions are similar in form but differ by up to a factor of 5 in the strength of the multiple-scattering contributions. Various reasons for the observed differences are explored and their practical significance is discussed.
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  • 26
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    Applied physics 60 (1995), S. 331-334 
    ISSN: 1432-0649
    Keywords: 42.60
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    Topics: Physics
    Notes: Abstract Multiple scattering of light in aerosol media is described in a simple picture within the framework of Mie theory. Our approach leads to an analytical expression of then-fold scattered electromagnetic field and then to an analytical derivation of multiple-scattering LIDAR equation form transport theory. This approach differs from both the descriptions of multiple scattering based on the approximation of radiative-tranfer theory and from statistical approaches mainly based on Monte-Carlo calculations. The physical quantities of interest are expressed by straightforward generalization of the corresponding single-scattering quantities. Therefore, the multiple-scattering contributions are calculated without losing the advantage of working with analytical expression in the frame of Mie theory.
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  • 27
    ISSN: 1432-0649
    Keywords: 42.60 ; 42.55 ; 42.65
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    Topics: Physics
    Notes: Abstract We systematically investigate the difference between both actively and passively mode-locked lasers with Gain-at-the-End (GE) and Gain-in-the-Middle (GM) at the example of Nd:YLF lasers. The GE laser generates pulse widths approximately three times shorter than a comparable GM cavity. This is due to enhanced Spatial Hole Burning (SHB) which effectively flattens the saturated gain and allows for a larger lasing bandwidth compared to a GM cavity. We first investigate enhanced SHB by measuring the cw mode spectrum, where we have observed that the mode spacing in GE cavities depends primarily on the crystal length. This was also confirmed for a Nd:LSB crystal, where the pump absorption length was significantly shorter than the crystal length. In mode-locked operation, pulse widths of 4 ps for passive mode locking and 5 ps for active mode locking are demonstrated with GE cavities, compared to 11 ps for passive and 17 ps for active mode locking with GM cavities. Additionally, the time-bandwidth product for the GE cavity is approximately twice the ideal product for a sech2 pulse shape and cannot be improved by dispersion compensation alone, while the GM cavity has nearly ideal time-bandwidth-limited performance. The results for the GM cavity compare well to existing theories taking into account the added effect of pump-power-dependent gain bandwidth which increases the bandwidth of Nd: YLF from 360 to 〉 500 GHz. In a following paper [1] (called Part II) a rigorous theoretical treatment of the effects due to SHB will be presented.
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  • 28
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    Applied physics 60 (1995), S. 315-323 
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    Topics: Physics
    Notes: Abstract A multiple scattering propagation model of narrow light beams in aerosol media is described. It is based on a paraxial approximation of the radiative transfer equation in which the flux normal to the incident beam direction is modeled by a diffusion process. The model solutions are the forward- and backscattered intensity profiles for the specified geometry and receiver aperture and field of view. The required inputs are the system parameters, and the aerosol single scattering angular phase function and extinction and scattering coefficients which are allowed to vary along the beam axis. Good agreement is shown with measurements performed in the laboratory over scales ranging from a few tens of mm to a few m, and in the atmosphere over a scale of the order of 1 km. The solutions are valid for optical depths smaller than ≈ 10, for phase functions corresponding to average size parameters of order one or greater, and for off-axis positions not exceeding ≈ 25% of the reciprocal of the scattering coefficient.
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  • 29
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    Keywords: 06.00 ; 07.60 ; 42.60
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    Topics: Physics
    Notes: Abstract We describe the accurate measurement of ultralow loss in a high-finesse Fabry-Perot interferometer using a diode-pumped Nd:YAG laser locked to the longitudinal mode with an active frequency-stabilization technique. By measuring the resonance full width and the free spectral range with the frequency response functions, and by measuring the transmission efficiency on resonance, the finesse and the loss at 1064 nm are accurately measured to be 78100 ± 1200 (reflectance of 99.99598 ± 0.00006%) and 1 5.9 ±2.0 × 10−6 (15.9 ± 2.0 ppm), respectively.
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  • 30
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    Applied physics 61 (1995), S. 243-248 
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    Keywords: 42.55 ; 42.60
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    Topics: Physics
    Notes: Abstract The coherence length of a single-frequency monolithic Nd:YAG ring laser is determined by using a highly unbalanced all-fiber Mach-Zehnder interferometer. A coherence length larger than ⋍ 1500km and a 3 dB linewidth less than ⋍ 60 Hz is estimated. Furthermore, an easy method to measure the temperature dependence on several laser parameters is described. This method is based on the laser emission in multiple axial modes, which is enforced by coherent optical feedback. A model explaining the multimode behaviour is presented.
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  • 31
    ISSN: 1432-0649
    Keywords: 42.60 ; 42.65 ; 82.80
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    Topics: Physics
    Notes: Abstract In this paper, the design and performance characteristics of a pulsed tunable dye laser system for the simultaneous generation of two UV wavelengths are presented. The system is composed of an oscillator and an amplifier stage, pumped by the second harmonic of a commercial Nd:YAG laser. Dual-wavelength operation is achieved with one additional tuning mirror introduced to the prism expanded grazing incidence oscillator. The two obtained wavelengths are independently tunable, their separation is only limited by the gain profile of the dye. Both wavelengths are frequency doubled by Second-Harmonic Generation (SHG) in two KDP or BBO crystals. Performance characteristics such as bandwidth, efficiency, tuning range and wavelength separation are reported. As application two such systems are used for the simultaneous detection of the four elements cadmium, nickel, manganese and lead by Laser-Excited Atomic Fluorescence Spectrometry in a graphite furnace (ETA-LEAFS).
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  • 32
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    Topics: Physics
    Notes: Abstract The second-order Stark shift of the components of the hyperfine structure of the transition1∑ g + (υ″ = 0,j″ = 13, 15) →3∏ ou + (υ′ = 43,j′ = 12, 16) (of molecular iodine have been studied by means of saturated absorption spectroscopy in an external cell with the I2 vapour located in an electric field. The anisotropic polarizabilities of the upper and lower levels together with the difference between the isotropic polarizabilities of the levels of the transition have been obtained.
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  • 33
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    Applied physics 60 (1995), S. 437-442 
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    Keywords: 42.55 ; 42.65 ; 42.60
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    Topics: Physics
    Notes: Abstract The design, configuration and operation of Ti:Sapphire-laser-pumped femtosecond Optical Parametric Oscillators (OPOs) using KTP and RTA are described. The results presented include configurations capable of producing transform-limited pulses shorter than 40 fs and operating with pump powers as low as 50 mW. Tunability within the 1–3 µn spectral region is demonstrated using pump-tuning alone.
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  • 34
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    Applied physics 61 (1995), S. 117-120 
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    Keywords: 42.55 ; 42.60 ; 92.60 ; 92.65
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    Topics: Physics
    Notes: Abstract We present the first lidar/DIAL system based on an Ultra Violet (UV) vibronic laser. A Nd:YAG-pumped Ce:LiSAF laser has been developed for this purpose, providing high pulse energy (5 mJ at 10 Hz), very high slope efficiency (33%), and a tuning range from 284 to 299 nm. Simultaneous measurements of SO2 and O3 concentration profiles are presented using this frequency-agile Ce:LiSAF-based lidar system.
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  • 35
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    Applied physics 61 (1995), S. 569-579 
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    Keywords: 42.60 ; 42.55 ; 42.65
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    Topics: Physics
    Notes: Abstract In Part I of this paper [1] experimental results were presented and discussed. In this part, we investigate theoretically the dynamics of end-pumped solid-state lasers due to enhanced spatial hole burning. This becomes possible by a fast numerical implementation of the saturated gain in the presence of strong spatial hole burning that allows to treat the multimode case for an arbitrary pumping level. We find for a wide range of laser parameters that the mode spacing of the cw running modes is essentially determined by the length of the gain medium and only weakly depends on the absorption depth of the pump transition. It is shown that spatial hole burning can lead to a completely flat saturated gain profile over half of the gain bandwidth. In mode-locked lasers, the flat gain due to spatial hole burning results in shorter pulses. But the pulses are neither Gaussian-nor sech-shaped as they are in actively or passively mode-locked lasers without spatial hole burning. Further, we show that soliton-like pulse shaping can be used to restore a transform-limited sech-shaped pulse in an end-pumped solid-state laser while exploiting the full gain bandwidth of the laser material.
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  • 36
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    Keywords: 42.55.Rz ; 42.60
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    Notes: Abstract Rhodamine 6G has been dissolved in copolymers of 2-HydroxyEthyl MethAcrylate (HEMA) and Methyl MethAcrylate (MMA) and the resulting solid-state solutions have been pumped at 337 nm and 532 nm. Lasing efficiencies similar to those found in ethanol solution have been obtained with a 1:1 vol/vol HEMA: MMA copolymer matrix, and lifetimes of ca. 10 000 (337 nm pumping) and ca. 75 000 (532 nm pumping) pulses at repetition rates up to 15 Hz and 10 Hz, respectively, have been demonstrated.
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  • 37
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    Keywords: 07.60 ; 42.50 ; 42.60
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    Notes: Abstract We describe the improvement of short-term frequency stability of diode-laser-pumped Nd:YAG lasers. To improve the vibrational isolation of reference cavities, the reference cavities were suspended by a double pendulum with magnetic damping. The frequency noise was reduced to lower than 1 Hz/√Hz at Fourier frequencies higher than 5 Hz and the minimum noise of 7 × 10−3 Hz/√Hz was recorded. The minimum root Allan variance was about 10−14 for the sampling time of 0.01 s. Heating of the reference cavity by absorbed laser power caused the thermal drift of cavity resonance frequencies. It resulted in the laser linewidth in the range of 30–50 Hz.
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  • 38
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    Applied physics 60 (1995), S. 565-570 
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    Keywords: 42.60
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    Topics: Physics
    Notes: Abstract Multiple-pass short-pulse off-axis amplification using spherical and cylindrical expansion schemes has been analyzed for different conventional discharge-pumped KrF gain modules. It is shown that using a single-gain module in a three-pass optimized off-axis arrangement, output energies up to several 1OO mJ can be reached with excellent contrast, starting from 10–20 µJ input energies.
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  • 39
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    Keywords: 07.65 ; 33.00 ; 42.60 ; 42.65 ; 42.80
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    Topics: Physics
    Notes: Abstract Spectroscopic detection of the methane in natural air using an 800 nm diode laser and a diode-pumped 1064 nm Nd:YAG laser to produce tunable light near 3.2 µm is reported. The lasers were pump sources for ring-cavity-enhanced tunable difference-frequency mixing in AgGaS2. IR frequency tuning between 3076 and 3183 cm−1 was performed by crystal rotation and tuning of the extended-cavity diode laser. Feedback stabilization of the IR power reduced intensity noise below the detector noise level. Direct absorption and wavelength-modulation (2f) spectroscopy of the methane in natural air at 10.7 kPa (80 torr) were performed in a 1 m single-pass cell with 1 µW probe power. Methane has also been detected using a 3.2 µm confocal build-up cavity in conjunction with an intracavity absorption cell. The best methane detection limit observed was 12 ppb m (Hz.)−1/2.
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  • 40
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    Applied physics 60 (1995), S. 411-417 
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    Keywords: 42.20 ; 42.60 ; 81.60.Dq
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    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics , Physics
    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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  • 41
    ISSN: 1432-0630
    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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  • 42
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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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  • 43
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    Applied physics 61 (1995), S. 75-80 
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    Keywords: 81.60 ; 82.65 ; 42.60
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    Notes: Abstract A three-dimensional mathematical model of laser-induced chemical etching of polysilicon films in chlorine atmosphere is presented. The model takes into account both photochemical and thermochemical mechanisms. A numerical solution of a simple process model and consequences for spatial resolution limits of the mask-less laser-induced chemical etching are presented.
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  • 44
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    Notes: Abstract A method of increasing the injection-locking efficiency by external narrow-band radiation relying on a space-frequency separation in a nonlinear absorber (spectral contraster) placed into the high-power dye-laser cavity is proposed. It is shown that this method permits an increase of the energy conversion efficiency into a narrow-band line (∼ 10−3 nm) up to 90% with a laser output energy of about 1 J and a pulse duration of more than 1 µs.
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  • 45
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    Applied physics 59 (1994), S. 645-648 
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    Notes: Abstract This work reports the role some additives have in pre-ionizing a N2 TE UV laser (337.1 nm). The modifications in both stimulated radiation characteristics and excitation-pulse period prove the different ionizing power of each element. The laser operating without a pre-ionizing wire device and with N2 plus different additives was able to generate pulses with a temporal width of the same order than those obtained when it was operating with N2 and a pre-ionizing wire device. Also, a relation between ionization efficiency and interelectrode distance has been established allowing the prediction of conditions for optimum laser-pulse width generation.
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  • 46
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    Applied physics 58 (1994), S. 211-223 
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    Keywords: 42.60 ; 42.55.Mv
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    Notes: Abstract At present the performance of short-pulse rare-gas-halide excimer-laser systems is definitely below that of solid-state systems, as far as the maximum peak-power is concerned. However, short-pulse excimer lasers are expected to be the best candidates to produce the highest focused intensities (I≳ 1020 W/cm2) provided by the shorter wavelength and less optical distortion in the gaseous active medium. This is especially feasible if the present performance of short-wavelength focusing optics is improved, and the problem of the limited extraction efficiency of excimers is solved. In this paper the results of former developments, novel methods, such as spatially-evolving chirped-pulse amplification, off-axis amplification, interferometric multiplexing, and some considerations for the achievable maximum brightness of table-top excimer systems are presented.
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  • 47
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    Applied physics 58 (1994), S. 529-532 
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    Keywords: 42.60 ; 32.30 ; 43.65
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    Topics: Physics
    Notes: Abstract Stable, narrow linewidth operation of red and 1.3 µm free-running laser diodes with external gratings in non-Littrow geometry is demonstrated. The resonance of the saturated fluorescence of an atomic beam with a contrast of 25% and a linewidth of 400 ± 50 kHz of the Ca intercombination line 41 S 0−43 P 1 (λ = 657 nm) is shown. A high-power (110 mW) single-mode external cavity laser diode at 1.3 µm is used for second-harmonic generation in a KTP crystal. The beat signal (signal to noise ratio about 25 dB) of 10 nW second-harmonic radiation at 1.3 µm and the radiation of a laser diode in the visible spectrum, as a step to realize a frequency chain, is observed.
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  • 48
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    Applied physics 58 (1994), S. 237-241 
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    Keywords: 42.60 ; 42.62.Hk
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    Notes: Abstract Problems of frequency conversion of ultrashort pulses are discussed. Efficient frequency conversion methods with large spectral bandwidth are reviewed with special emphasis placed on dispersively compensated schemes employing phase matchable nonlinear optical crystals.
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  • 49
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    Keywords: 78.66 ; 71.55 ; 42.60
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    Topics: Physics
    Notes: Abstract The photodeflection method has been applied to detect optically induced changes of the refractive index due to self-organization of electrons and holes, trapped in the disordered structure of a chalcogenide glass of the As-S type.
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  • 50
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    Keywords: 52.25 ; 42.60 ; 35.80
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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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  • 51
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    Applied physics 58 (1994), S. 423-429 
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    Keywords: 02.00 ; 42.60 ; 81.60
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    Notes: Abstract A model was developed to investigate the effect of polarization on laser-induced surface-temperature rise in absorbing materials. GaAs is taken as a substrate material in this study. The polarization was found to significantly affect the laser-induced temperature rise on the substrate surface. This is due to the different surface absorption for the beams with different polarization directions. The laser beam with p polarization can induce higher temperature rise than that with s polarization. If the substrate has a high imaginary value in the complex refractive index, the peak laser-induced surface temperature falls concurrently. A similar effect of polarization to the laser-induced surface temperature rise can be expected to all other absorbing materials.
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  • 52
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    Applied physics 58 (1994), S. 471-474 
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    Keywords: 42.60 ; 74.70 ; 73.60
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    Notes: Abstract Thin films of YBa2Cu3O7 coated with a photoresist have been patterned by means of XeCl- and KrF-excimer-laser light projection. Lines with widths down to 3.5 μm have been fabricated without degradation in T c and j c. The technique is compared with wet-chemical etching and with ns and fs excimer-laser patterning of films without a protective layer.
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  • 53
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    Applied physics 59 (1994), S. 209-213 
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    Keywords: 42.60 ; 81.15 ; 61.80
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    Notes: Abstract Irradiation of ceramic alumina (Al2O3) with 248 nm and 308 nm excimer-laser light results in an activation of the surface for subsequent electroless copper deposition. The dependence of this activity on laser parameters, ambient atmosphere during irradiation, and pattern size is described. The results are tentatively explained by changes in the chemical and electrochemical properties of irradiated areas.
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  • 54
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    Notes: Abstract We represent an ultrafast beam-deflection method as a simple and powerful tool for the time-resolved measurement of induced changes of the refractive index in the order of Δn=10−5. The method is applied for measuring the changes of components of the refractive index parallel and perpendicular to the pump-pulse polarization on a femtosecond time scale. Fused silica and CS2 are used as samples for demonstrating our method.
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  • 55
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    Applied physics 56 (1993), S. 385-390 
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    Keywords: 42.55.M ; 42.55.R ; 42.60
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    Topics: Physics
    Notes: Abstract Lasing and fluorescence properties of ten dyes covering the spectral range from 400 nm to 800 nm were studied in a silica matrix prepared by the sol-gel technique. The dye-doped sol-gel silica samples fluoresced strongly under laser excitation. Many of the samples were also induced to superradiate. In comparison to dyes in alcohol solvents, significant red-shifting was observed in the sol-gel silica fluorescence spectra. Plausible causes of the red-shift are discussed.
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  • 56
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    Notes: Abstract A two-stage Raman-conversion system pumped with a Q-switched alexandrite laser is proposed for the generation of broadly tunable infrared radiation. The first stage is a high-pressure Raman cell which accepts a pump beam in long-focusing or parallel-beam geometry, while the successive second one is made of a multi-pass Raman cell with repeated focusing. Using a selected combination of vibrational or rotational Raman shifting by H2, a spectrum ranging from 0.75 μm to 15 μm can be covered by this system.
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  • 57
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    Applied physics 57 (1993), S. 213-215 
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    Notes: Abstract We have studied the effects of decreasing the excitation duration on the pulse-repetition-rate (PRR) capabilities of a low-pressure (P〈200 Torr) N2-TE laser. It was found that maximum PRR increases with decreasing duration of the discharge current. PRR as high as 1000 Hz has been obtained in the sealed-off non-flowing regime of laser operation. These findings are adequately explained by the time dependence of the arc-discharge formation.
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  • 58
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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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  • 59
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    Applied physics 56 (1993), S. 329-333 
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    Keywords: 42.60 ; 61.80 ; 68.35
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    Notes: Abstract A new kind of surface structure was observed on polyethylene-terephthalate (PET) foils after 248 nm KrF-excimer-laser irradiation in vacuum. The laser fluences employed were around the ablation threshold. The branched fractal structures observed have a lateral dimension in the micrometer range and a heigth of 30 to 60 nm.
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  • 60
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    Applied physics 56 (1993), S. 417-423 
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    Keywords: 42.60 ; 82.65 ; 73.40
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    Notes: Abstract Ablation of the surface of a polyimide (Kapton™) film by single pulses of 248 nm or 308 nm radiation (∼20 ns) or 9.17 μm laser radiation (∼170 ns) was studied by photographing the emergence of the blast wave and the plume by a pulse (〈1 ns; 596 nm) of visible laser light. The dynamics of the blast wave was similar in the ultraviolet and in the infrared but the composition of the plume was obviously different. A mass of opaque solid material was ejected for as long as 2.6 μs following the IR pulse in contrast to the minute amount of solids that are seen in the ablation by UV laser pulses of ns duration. UV laser pulses of 50–400 μs duration interact with polyimide surfaces in a manner that is similar to IR laser pulses of ns duration or longer. Chemical analysis of the ablation products that are obtained under various conditions of ablation when compared to the known modes of thermal degradation of polyimide show that the reaction is a thermal process when IR laser pulses or UV laser pulses of long (〉10 μs) duration are employed. Ablation by ns UV laser pulses differs fundamentally in the chemistry of the products from all of the cases mentioned above.
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    Applied physics 54 (1992), S. 83-88 
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    Keywords: 42.60 ; 42.60.F ; 42.60.K
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    Topics: Physics
    Notes: Abstract We present investigations on the influence of mode matching on the efficiency of longitudinally pumped solid state lasers. In a theoretical part we enhance an existing model for four level lasers from idealized cylindrical modes to arbitary pump and laser modes in a random relative position thereby neglecting beam deformation due to thermal effects. The theoretical predictions were confirmed experimentally with an end-pumped Nd:YAG rod operated at 1064 nm. To investigate the effect of misalignment on the efficiency we used a Ti-Sapphire pump laser which was displaced relative to the laser beam. To establish the influence of arbitary pump modes on laser performance a diode laser equipped with coupling optics served as pump source for the same resonator. The resulting decrease in slope efficiency compared to the Ti-Sapphire pumped system could be explained in terms of limited mode overlap due to the characteristic pump field distribution produced by the diode coupling optics.
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    Applied physics 54 (1992), S. 189-192 
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    Keywords: 42.60 ; 81.15 ; 82.00
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    Notes: Abstract The pyrolytic laser-induced chemical vapor deposition (LCVD) of tungsten microstructures in the form of spots has been investigated. Fused quartz substrates and a mixture of WF6 and H2 have been employed in the experiments. Different shapes of spots related to different partial pressures of WF6 and H2 have been revealed. The results can qualitatively be described by a combination of surface reactions and gas-phase reactions resulting in tungsten deposition and surface etching.
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  • 63
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    Applied physics 54 (1992), S. 506-512 
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    Keywords: 42.60 ; 42.55.Gp
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    Notes: Abstract Calculations of the effects of amplified spontaneous emission (ASE) in laser amplifiers designed to amplify sub-picosecond pulses are presented. A one-dimensional code is used with some simple approximations to account for aspect ratio variation in cases of cylindrical symmetry. Gain depletion due to ASE is compared for various multi-pass geometries. Optimisation for short pulse amplification of a telescopic, beam-expanding, 4-pass amplifier is considered.
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    Applied physics 54 (1992), S. 531-533 
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    Keywords: 07.60 ; 42.60 ; 42.80
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    Notes: Abstract This paper reports a successful achievement of laser-induced biological cell fusion using an excimer laser excited dye laser. To our knowledge, we examined for the first time the dependence of fusion rate on laser pulse energy, number of laser pulses, and laser wavelength. Maximum fusion rate of approximately 50% was obtained by this laser fusion technology.
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  • 65
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    Notes: Abstract In this paper we describe the experimental investigation of the post-breakdown development of a helium plasma generated by a hybrid 10 μm CO2 laser pulse. As a result we found that a long tail and a high energy of the CO2 laser pulse cause multiple successive breakdown in the gas. We have measured the time to the first breakdown and the time between first and second breakdown as functions of gas pressure and laser pulse peak intensity as well as the spatial intensity distribution of the transmitted laser pulse. Among the relevant mechanisms self-focusing is not observed before the second breakdown.
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  • 66
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    Notes: Abstract An optical parametric oscillator (OPO), as a novel kind of broadband Stokes source, is employed for coherent anti-Stokes Raman spectroscopy (CARS). Compared to the conventional dye laser configuration OPO-CARS offers practical advantages. The tunable OPO allows a fast and comfortable frequency tuning. The excitation bandwidth of about 35 cm−1 (FWHM) limits the spectral range of effective and stable single pulse CARS generation but can be used to enhance selected spectral structures.
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    Applied physics 55 (1992), S. 365-367 
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    Keywords: 42.55.Mv ; 42.55.Rz ; 42.60
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    Notes: Abstract Fluorescence and lasing properties of coumarindoped silica samples prepared by sol-gel process were investigated. Superradiant emissions at peak power as high as 7MW were measured at around 535 nm when the silica samples were excited by a XeF laser. The energy of the superradiant pulse was 89 mJ, corresponding to a conversion efficiency of 36.6%.
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    Applied physics 55 (1992), S. 433-436 
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    Notes: Abstract In this paper the ionizing role of isobutane (iso-C4H10) in the operation of a N2TE UV laser is analyzed. Laser pulse width value modifications, different laser wavelengths generated in the 2+ system and voltage pulse period modifications are analysed in order to show that isobutane, in very reduced quantities, generates a preionizing effect that can be higher than that produced by a conventional wire preionization system.
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  • 69
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    Applied physics 54 (1992), S. 231-233 
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    Keywords: 42.60
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    Notes: Abstract High energy picosecond pulse trains from a passively mode-locked Nd: YAG laser are obtained. The negative feedback controlled oscillator delivers 10–30 μs trains with energies of up to 30 mJ and single pulse duration of less than 25 ps. The laser is operated with a repetition rate of 10 Hz. An active Q-control of the cavity generates a short pulse train with duration of 30–40 ns. The long pulse train energy reproducibility is better than ± 1.5%.
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  • 70
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    Applied physics 54 (1992), S. 288-294 
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    Keywords: 42.60 ; 42.65
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    Topics: Physics
    Notes: Abstract Systematic experimental observations of axially phase-matched parametric four- and sixwave mixing processes have been made in potassium vapor pumped on or near the 4S–6S two-photon resonance. An IR up-conversion with a beta barium borate crystal was used for the detection of IR emissions. All the predicted processes have been observed. It is found that the excitation spectra of the emissions for those processes observed in this work are quite different from the excitation spectra of similar processes in sodium vapor. A dye-dependence of some emissions generated by the axially phase-matched parametric six-wave mixing processes has been found by using different dyes in the dye laser. The reason for the dye-dependence is discussed.
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  • 71
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    Applied physics 54 (1992), S. 307-308 
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    Keywords: 42.55 ; 42.60
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    Topics: Physics
    Notes: Abstract For the He-Ne/I2-laser, a stable monomode operation has been realized when the tube pressure exceeds a certain level. An output power of more than 1 mW has been obtained at the 632.8 nm laser transition. Within the monomode tuning range of the laser, the d, e, f, g, and h, i, j iodine hyperfine components of the R(127) line of the 11–5 band of the B 3 II + 0u−X 1Σ+ 0g electronic transition have been observed. The mode selection method used makes it possible to increase the contrast of the iodine hyperfine components.
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  • 72
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    Applied physics 54 (1992), S. 202-204 
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    Keywords: 07.60 ; 42.60
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    Topics: Physics
    Notes: Abstract We have developed a frequency-stabilization system for the He-Ne laser using an external Fabry-Perot cavity which is locked to the Lamb dip of the laser. The cavity serves as a frequency discriminator for high-frequency noise suppression, while the length of the Fabry-Perot cavity is controlled, reffered to the Lamb dip, in order to eliminate low-frequency fluctuations. The frequency noise of a laser stabilized with the cavity suspended in a vacuum tank can be suppressed to about 1 $$0.1Hz/\sqrt {Hz} $$ at around 100 Hz by an FM-sideband locking method. The oscillation frequency is fixed to the Lamb dip at low frequency by controlling the cavity length thermally. The frequency fluctuation around the Lamb dip was estimated to be ∼ 2.3 MHz.
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  • 73
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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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    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics , Physics
    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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  • 74
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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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    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics , Physics
    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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  • 75
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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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    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics , Physics
    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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  • 76
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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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    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics , Physics
    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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  • 77
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    Notes: Abstract Improvements in output pulse energy and efficiency of a conventional capacitor-transfer-type discharge excimer laser with automatic preionization have been achieved by extending the discharge volume and resulting moderate pumping of the active medium. The discharge laser produces a pulse energy of more than 1 J for XeCl, KrF, and ArF lasers in square beams of about 2×2 cm2, and the maximum overall efficiency observed is 2.9% for XeCl, 3.2% for KrF and 1.8% for ArF. The laser device has been involved in a picosecond (∼ 32 ps) XeCl laser amplification system, and was operated as an amplifier at a repetitive frequency of 10 Hz. Saturation fluence for XeCl laser was measured to be 1.4 mJ/cm2, and the picosecond pulse energy of ∼40 mJ was extracted from the amplifier.
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  • 78
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    Applied physics 52 (1991), S. 46-54 
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    Keywords: 42.55K ; 42.60
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    Notes: Abstract Intense multi and single line laser operation is reported from TEA semiconductively preionised HF/DF lasers employing various discrete components or flat plate excitation circuits. The performance, the spectral and the beam characteristics of these lasers are given and are compared to the characteristics of previously described HF/DF lasers. Their improved performance parameters are explained in terms of the preionizing action of the semiconductors, the low inductance of the circuits employed and the good matching of the voltage and current waveforms of the excitation circuitry to their excitation. Finally, their potential in specific applications, like infrared vitreous surgery (HF) or atmospheric laser beam propagation (DF), is stressed.
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  • 79
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    Notes: Abstract Direct observation of the magnetic structure of transitions in molecular iodine is first reported. Using the method of saturated absorption spectroscopy in an external cell with I2 vapour located in a longitudinal magnetic field we resolved the magnetic structure of the components of the hyperfine structure of the transition $${}^1\sum _g^ + (v^ = 0,{\text{j}}^ = 13,15) \to {}^3\prod _{ou}^ + (v^\prime = 43,{\text{j}}^\prime = 12,16).$$ The gyromagnetic constants of the upper and lower levels of the transition have been found. An estimation of the frequency shift of saturation resonances in the magnetic field has been made.
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  • 80
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    Applied physics 53 (1991), S. 142-147 
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    Keywords: 32.30 ; 42.60 ; 35.20
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    Topics: Physics
    Notes: Abstract Laser diodes, optically narrowed using the technique of resonant optical feedback, have been frequency stabilised to hyperfine transitions of the two Rb D lines at 780 nm and 795 nm. The best frequency stability of the beat between two similar lasers was 1.5 kHz (4 parts in 1012 of the optical frequency) observed for an averaging time of 10 s. A frequency reproducibility of 44 kHz (one standard deviation) was observed on strong isolated hyperfine components, and possible causes of frequency shift were investigated. Values for the Rb hyperfine intervals were obtained, leading to an improved determination of the excited state hyperfine constants of 85Rb and 87Rb, and the isotope shift. The absolute frequencies of the hyperfine transitions of the two D lines were determined interferometrically by comparison with an 127I2-stabilised He-Ne laser at 633 nm. Measurements were made on component c′ at 795 nm and the d/f level crossing at 780 nm. The frequencies were found to be 377106271.6 MHz and 384227981.9 MHz respectively under the chosen conditions, with an uncertainty of ±0.4 MHz, limited by knowledge of the reference frequency. These results represent the most accurate and complete characterisation to date of laser diodes stabilised to Doppler-free Rb spectra.
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  • 81
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    Applied physics 53 (1991), S. 148-152 
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    Keywords: 02.50 ; 42.60 ; 42.80
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    Topics: Physics
    Notes: Abstract This paper deals with a theoretical and experimental study of the picosecond synchronization of a streak camera used in conjunction with a cw actively mode-locked laser system. The temporal resolution of two synchronization set-ups, a passive device (sweep obtained directly from the mode-locker oscillator) and an active arrangement (deflection derived from the recurrent laser pulses through a photodiode and a tunnel diode) has been examined. On the basis of the stochastic analysis it has been possible to interpret the experimental results for both configurations: in particular, it has been demonstrated that even in the presence of phase noise in the laser signal, perfect synchronization can be achieved.
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  • 82
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    Applied physics 53 (1991), S. 82-87 
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    Keywords: 42.60 ; 42.55M
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    Notes: Abstract A novel geometry is presented for transversally pumped, short-pulse dye and discharge-pumped excimer amplifiers. Significant increase of the homogeneity and of the cross-section of the active medium seen by the short pulses is accomplished by proper choice of the incident angle of the beam to be amplified. The proposed scheme makes it possible to substitute the sophisticated wide aperture, homogeneously pumped amplifiers by standard devices.
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  • 83
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    Applied physics 53 (1991), S. 115-118 
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    Notes: Abstract The process of laser mode-locking with spatial dispersion of the radiation in the gain medium is analyzed. It is shown by a simple model in the frequency description that simultaneous phase matching of the axial modes in both space and time may be accomplished. The reduction of the mode competition due to the spatial dispersion favors the mode-locking process and leads to broadening of the locked spectrum compared with the case of no dispersion. After space-to-time transformation this effect allows one to obtain shorter pulses than those produced by standard techniques.
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  • 84
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    Applied physics 53 (1991), S. 52-57 
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    Keywords: 33.70 ; 42.10 ; 42.60
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    Topics: Physics
    Notes: Abstract The new nonlinear phenomenon of the appearance of the modulation of the intensity of the frequency-modulated travelling wave saturated absorption medium is investigated. This effect enables one to estimate the shifts of the stabilized laser frequency caused by the wavefront curvature effect.
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  • 85
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    Notes: Abstract Saturation of two-dimensional laser-induced fluorescence is demonstrated using the coincidence between the strong 0–0 vibrational transition of OH around 308 nm and the emission of a tunable XeCl excimer laser. The 2D images were insensitive to variations in the laser power, implying reduced sensitivity to quenching processes. The ratio of the 2D images in the linear and saturated regimes show two-dimensional variations in the saturation intensity. Since saturation intensity is proportional to the quenching rate, this novel method allows one to check for variations in collisional lifetimes across the flame.
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  • 86
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    Applied physics 53 (1991), S. 330-331 
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    Keywords: 42.60 ; 61.40 ; 68.35
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    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics , Physics
    Notes: Abstract Structure formation observed in UV-laser ablated poly-ethylene-terephthalate (PET) foils can uniquely be assigned to mechanical and thermal pretreatments.
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    Applied physics 51 (1990), S. 71-74 
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    Keywords: 42.60 ; 42.55
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    Notes: Abstract We have found a simple analytical expression which describes the relation between amplified spontaneous emission (ASE) and small-signal gain in short-pulse amplifiers. It is also shown that the contrast of the short pulse to the ASE is weakly dependent on the saturation of the ASE, and influenced mainly by the saturation of the short pulse. The theoretical considerations were verified by measurements.
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  • 88
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    Applied physics 50 (1990), S. 541-545 
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    Keywords: 06.607 ; 42.60 ; 42.65
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    Topics: Physics
    Notes: Abstract Amplified spontaneous emission of a dye cell is parametrically amplified in barium betaborate (BBO) crystals. Pumping the system by the third harmonic of a Nd:YAG laser a tuning range from 3500 to 25080 cm−1 is accessible with energy conversion efficiencies of several percent. Properties of ultrashort light pulses in the visible and UV spectral range are presented. A spectral width of 10 cm−1 and a pulse duration of approximately 20 ps are measured.
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  • 89
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    Applied physics 51 (1990), S. 75-79 
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    Notes: Abstract Continuous scanning of a 1 GHz pulsed laser line using only one 5-cm grating as an intracavity selective element is obtained from a pulsed dye laser pumped by a Nd: YAG (8 ns-532 nm) laser. Such a single-grating dye laser operates in the same way as a real double-grating grazing incidence laser and provides an appreciable improvement of the resolution (enhancement factor ≈2), compared with previous grazing incidence ones. The superiority of this laser cavity has been proved for single-longitudinal-mode operation.
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  • 90
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    Applied physics 51 (1990), S. 292-294 
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    Keywords: 42.55 ; 42.60
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    Notes: Abstract The conditions for optimum 611.8 nm laser operation are obtained and a convenient method for indicating 3.39 µm suppression is proposed. Single longitudinal mode 611.8 nm generation is obtained using higher gas-mixture pressure and application of an axial magnetic field. Several milliwatt monomode output power and 0.75 multimode-to-monomode power conversion coefficients are obtained without an internal iodine cell. A comparison of the experimental results with a single-mode laser theory is given.
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  • 91
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    Applied physics 51 (1990), S. 314-316 
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    Keywords: 82.50 ; 42.60
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    Topics: Physics
    Notes: Abstract Ablation of polyetheretherketone (PEEK), a high temperature thermoplastic, by XeCl laser radiation occurs at fluences in excess of 0.07±0.01 J cm−2. The volatile products of ablation are CO and C2H2 with smaller quantities of CH4, C4H2, C6H6 and other C3 and C4 hydrocarbons. At fluences close to the threshold ablation produces involatile material of relatively high molecular weight but at high fluences extensive disruption of the PEEK structure occurs with conversion of all of the oxygen in the polymer to carbon monoxide.
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  • 92
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    Applied physics 51 (1990), S. 350-357 
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    Keywords: 42.65J ; 42.60 ; 32.80
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    Notes: Abstract As a rule, phase gratings yield no power transfer in two-beam excite-probe experiments. We show that an exception to this rule is that of ultrashort-pulse excite-probe experiments involving slow phase effects, such as thermal gratings, occurring in a moving sample medium under high-repetition-rate excitation. A symmetric coherent artifact results, and depending on the direction of the sample motion, its amplitude can be positive, negative, or zero. This artifact occurs only in multiple-pulse experiments, involving accumulated gratings, while, on the other hand, the antisymmetric artifact (described by Palfrey and Heinz) results only from single-pulse effects. We discuss these two complementary effects and present both theory and experiments.
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  • 93
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    Applied physics 51 (1990), S. 386-394 
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    Keywords: 42.60 ; 42.65
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    Topics: Physics
    Notes: Abstract A rich emission spectrum in the wavelength range 300–600 nm, including 50 spectral lines, has been observed as a pulsed dye laser is tuned to the 42 S 1/2–32 D 5/2 two-photon resonance in potassium vapor. It is found that many kinds of mechanisms, including energy pooling, harmonic generation, quadrupole radiation, excitation transfer, and multiwave mixing etc., are involved in producing these lines. The process for each spectral line has been identified and is presented in tabular form.
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  • 94
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    Applied physics 51 (1990), S. 427-430 
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    Keywords: 33.80.K ; 42.55.Hq ; 42.60 ; 52.80.Dy
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    Topics: Physics
    Notes: Abstract We present the current-reversal spectra of the high pressure Na-Hg-Xe and Na-Cd-Xe lamps, from which the specific NaHg and NaCd structured continua have been observed. Detailed analysis revealed the existence of additional structure in the case of NaCd and NaHg blue diffuse bands. In the NaHg case the neighbourhood of the 330 nm sodium line revealed two satellite bands of NaHg origin, but almost no structure around the 330 nm sodium atomic line was found in the case of Na-Cd-Xe discharge lamp.
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  • 95
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    Applied physics 51 (1990), S. 421-426 
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    Keywords: 42.50 ; 42.55 ; 42.60
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    Topics: Physics
    Notes: Abstract A comprehensive control system has been developed for the stabilization of internalmirror He-Ne lasers to their power envelopes. It is designed particularly for use with lasers emitting at 552, 505, or 490 THz (543, 594, 612 nm). The aim has been to combine convenience in routine operation with good day-to-day resettability and minimal frequency drift during a day. The lasers are observed to emit in up to four modes simultaneously and their tuning behaviour is highly alignment-sensitive. They also tend to flip between modes having orthogonal linear planes of polarization. Reliable control of polarization and mode frequency are possible using permanent magnets and active length control through thermal expansion. The stabilized single-frequency outputs have frequency drifts of about 2×10−8 per year, and powers of between 150 μW and 850 μW.
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  • 96
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    Applied physics 50 (1990), S. 227-230 
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    Keywords: 42.60 ; 82.65
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    Topics: Physics
    Notes: Abstract The time-dependent intensity profile of pulsed KrF excimer laser radiation reflected from polyimide is determined over a range of laser fluences, from well below to above the ablation threshold. The reflected laser beam is truncated once the incident laser radiation exceeds a threshold fluence, i.e., truncation depends on the energy per unit area and not on the intensity, analogous to results for the ablation threshold and the etch depth per pulse. The threshold fluence for pulse truncation corresponds to the onset of ablation. The results indicate that the truncation is not due to laser plasma interactions at these fluences. A general mechanism is discussed involving a time dependent index of refraction.
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  • 97
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    Keywords: 42.55H ; 42.60
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    Notes: Abstract This paper describes the laser performance of an X-ray preionized ten-liter volume, electron-avalanche discharge XeCl system, operated at dc charging voltages of up to 70 kV both with and without X-ray preionization. An output energy of more than 11J uniformly distributed over a (7×10) cm2 spot size was achieved using a multichannel spark-gap as the main discharge switch. The discharge was also successfully operated in the switchless mode, yielding a 4.8 J output energy and a 0.9% efficiency. The time-resolved gain measurements provided information on the laser discharge evolution.
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  • 98
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    Applied physics 50 (1990), S. 67-70 
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    Keywords: 42.55Dk ; 42.60
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    Topics: Physics
    Notes: Abstract We have investigated the optogalvanic effect (OGE) in the external cavity OG cell as a function of CO2 gas pressure, discharge current and chopping frequency. Usefulness of these investigations with regards to optogalvanic frequency stabilization of CO2 lasers has been discussed. In particular, we find that operation of the OG cell at low pressure (∼2.5 Torr) in conjunction with high (∼800 Hz) modulation offers the best condition for stabilization.
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  • 99
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    Keywords: 07.60 ; 43.85 ; 42.60
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    Notes: Abstract A photoacoustic intracavity configuration is presented; a resonant photoacoustic cell excited in its first longitudinal mode is placed inside the cavity of a CO2 waveguide laser. Due to the high laser power and the sharp intracavity focus, saturation effects occur in the excitation and relaxation process of absorbing C2H4 molecules. A more optimal configuration is applied to measure the C2H4 emission of several Rumex species. A detection sensitivity of 6 ppt (parts per trillion) C2H4 is reached, equivalent to a minimal detectable absorption of 1.8×10−10 cm−1.
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  • 100
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    Notes: Abstract The paper describes detailed experimental studies of the width, shape and shifts of saturated absorption resonances at the X(v″=0, j″=13)→B(v′=43, j′=12) transition of molecular iodine. Use of the geometry of oppositely travelling and unidirectional waves in the experiment and study of the luminescence decay under pulsed excitation allowed estimation of the cross-sections of elastic and inelastic scattering of I2 molecules on the upper and lower levels of transition. The observed nonlinear dependence of width and shift of the saturation resonance on iodine pressure is explained by the influence of elastic collisions with no phase mismatch.
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