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  • Springer  (87,313)
  • American Association for the Advancement of Science  (12,763)
  • 2010-2014
  • 2005-2009  (50,385)
  • 2000-2004  (42,343)
  • 1980-1984
  • 1925-1929  (7,348)
  • 2006  (50,385)
  • 2004  (42,343)
  • 1927  (7,348)
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  • 2010-2014
  • 2005-2009  (50,385)
  • 2000-2004  (42,343)
  • 1980-1984
  • 1925-1929  (7,348)
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  • 1
    Description / Table of Contents: Prof. Dr. -Ing. Wolfgang Spyra Brandenburg University of Technology in Cottbus, Germany The demilitarization and conversion of military properties wor- wide has been a topic of growing importance since the end of the Cold War. The slowing of the arms race brought on by weapons treaties and relaxed tensions between NATO and Warsaw Pact nations caused sto- piles of conventional weapons to become superfluous. The need to process and dispose of such weapons began more quickly in NATO countries. This demilitarization process began shortly after the reunification of Germany and was largely completed by the mid to late 1990’s. The remaining process, no small task in itself, of converting lands formerly used by the military into safe and environmentally acceptable landscapes may continue for decades to come. Due to a lack of resources and technology, the process of demilitarization in the former Warsaw Pact countries has launched more slowly. In 2002 both Georgia and Moldova finished projects which destroyed their stocks of liquid ballistic missile components. Both these projects were carried out through the cooperative support of trans-national organizations, private contractors, and research institutions. The Republic of Azerbaijan now finds itself at the beginning of its demilitarization process. Stored at the country’s military depots are over 2000 tons of missile fuels, oxidizer, and chemical additives. This hazardous waste is kept in tanks intended only for temporary transport and storage.
    Pages: Online-Ressource (X, 148 pages)
    ISBN: 9781402023811
    Language: English
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  • 2
    Keywords: communication ; design ; dynamics ; environment ; network ; physics ; power transmission ; radio ; satellite ; simulation ; technology ; transmission
    Description / Table of Contents: The 17 chapters of this book grew out of the tutorial lectures given by leading world-class experts at the NATO Advanced Research Workshop “Effects of Space Weather on Technology Infrastructure” - ESPRIT, which was held in Rhodes on March 25-29, 2004. All manuscripts were refereed and subsequently meticulously edited by the editor to ensure the highest quality for this monograph. I owe particular thanks to the lecturers of the ESPRIT Advanced Research Workshop for producing these excellent tutorial reviews, which convey the essential knowledge and the latest advances in our field. Due to the breadth, extensive literature citations and quality of the reviews we expect this publication to serve extremely well as a reference book. Multimedia material referring to individual chapters of the book is accessible on the accompanying CD. The aim of ESPRIT was to assess existing knowledge and identify future actions regarding monitoring, forecasting and mitigation of space weather induced malfunction and damage of vital technological systems operating in space and on the ground.
    ISBN: 9781402027543
    Language: English
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  • 3
    Pages: Online-Ressource (XII, 543 Seiten)
    Edition: 3. Aufl.
    ISBN: 9783540345251
    Language: German
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  • 4
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    London ; New York : Springer
    Decision engineering  
    Keywords: Decision making, Mathematical models. ; Decision making, Methodology.
    Pages: ix, 172 p.
    ISBN: 1-85233-864-4
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  • 5
    Keywords: Semantic Web, Congresses.
    Pages: x, 145 p.
    ISBN: 3-540-25982-1
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  • 6
    Publication Date: 2017-04-04
    Description: Secondary minerals of a 91 meters-thick sequence of pillow basalts cored during ODP Leg 195 (Site 1201, West Philippine Basin) were investigated to reconstruct the hydrothermal alteration history and regime. The basement was first buried by red clays, and then by a thick turbidite sequence, thereby isolating it from seawater. The basalts are primitive to moderately fractionated, texturally variable from hypocrystalline and spherulitic to intersertal, sub-ophitic and intergranular. Relic primary minerals are plagioclase, clinopyroxene and opaques. Hydrothermal alteration pervasively affected the basalts, generating secondary clay minerals (mostly glauconite, minor Al-saponite and Fe-beidellite, Na-zeolites, minor alkali-feldspar and calcite. The secondary mineral paragenesis and mutual relationships suggest that the hydrothermal alteration occurred under zeolite-facies conditions, at temperatures 100-150 C. The main phase of alteration occurred under oxidizing conditions, with a high seawater rock ratio, in an open-circulation regime, at temperatures of 30-60 C, with precipitation of abundant glauconite and iddingsite. A later stage of alteration occurred at ca. 70 C, with precipitation of abundant Na-zeolites and minor calcite, in a more restricted circulation regime as a consequence of basement burial under the sedimentary cover, which supplied an altered, Ca-rich and Magma-sulfate-poor water causing precipitation of almost pure calcite.
    Description: Published
    Description: 87-112
    Description: open
    Keywords: west Philippine ; Mineral chemistry ; 04. Solid Earth::04.04. Geology::04.04.05. Mineralogy and petrology ; 04. Solid Earth::04.04. Geology::04.04.07. Rock geochemistry
    Repository Name: Istituto Nazionale di Geofisica e Vulcanologia (INGV)
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  • 7
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    In:  EPIC3The Andes - Active Subduction Orogeny, Frontiers in Earth Sciences, Springer, pp. 3-27, ISBN: 978-3-540-24329-8
    Publication Date: 2014-04-15
    Description: We quantitatively analyse the spatial pattern of deformation partitioning and of temporal accumulation of deformation in the Central Andes (15–26° S) with the aim of identifying those mechanisms responsible for initiating and controlling Cenozoic plateau evolution in this region. Our results show that the differential velocity between upper plate velocity and oceanic plate slab rollback velocity is crucial for determining the amount and rate of shortening, as well as their lateral variability at the leading edge of the upper plate. This primary control is modulated by factors affecting the strength balance between the upper plate lithosphere and the Nazca/South American Plate interface. These factors particularly include a stage of reduced slab dip (33 to 20 Ma) that accelerated shortening and an earlier phase (45 to 33 Ma) of higher trenchward sediment flux that reduced coupling at the plate interface, resulting in slowed shortening and enhanced slab rollback. Because high sediment flux and transfer of convergence into upper plate shortening constitute a negative feedback, we suggest that interruption of this feedback is critical for sustaining high shortening transfer, as observed for the Andes. Although we show that climate trends have no influence on the evolution of the Central Andes, the position of this region in the global arid belt in a low erosion regime is the key that provides this interruption; it inhibits high sediment flux into the trench despite the formation of relief from ongoing shortening. Along-strike variations in Andean shortening are clearly related to changes of the above factors. The spatial pattern of distribution of deformation in the Central Andes, as well as the synchronization of fault systems and the total magnitude of shortening, was mainly controlled by large-scale, inherited upper plate features that constitute zones of weakness in the upper plate leading edge. In summary, only a very particular combination of parameters appears to be able to trigger plateau-style deformation at a convergent continental margin. The combination of these parameters (in particular, differential trench-upper plate velocity evolution, high plate interface coupling from low trench infill, and the lateral distribution of weak zones in the upper plate leading edge) was highly uncommon during the Phanerozoic. This led to very few plateau-style orogens at convergent margins like the Cenozoic Central Andes in South America or, possibly, the Laramide North American Cordillera.
    Repository Name: EPIC Alfred Wegener Institut
    Type: Inbook , peerRev
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  • 8
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    Publication Date: 2020-02-12
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  • 9
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    Publication Date: 2020-02-12
    Keywords: 550 - Earth sciences
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  • 10
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    International journal of earth sciences 18 (1927), S. 189-221 
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  • 11
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    International journal of earth sciences 18 (1927), S. 1-37 
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  • 12
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    International journal of earth sciences 18 (1927), S. 60-60 
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    International journal of earth sciences 18 (1927), S. 239-239 
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  • 14
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    International journal of earth sciences 18 (1927), S. 239-240 
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  • 15
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    International journal of earth sciences 18 (1927), S. 263-298 
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  • 16
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    International journal of earth sciences 18 (1927), S. 241-263 
    ISSN: 1437-3262
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    Topics: Geosciences
    Notes: Zusammenfassung Die cambro-silurische Schichtentafel von Estland zeigt zwei Kluftsysteme: das eine mit Klüften in NW-SO- und NO-SW-Richtung, das andere mit solchen in N-S- und O-W-Richtung. Das erste ist das ältere und seine Anlage dürfte in der Zeit der jungkaledonischen Faltung zu suchen sein, zu der auch die Einmuldung der Schichtentafel erfolgte. Zur Zeit der varistischen Faltung erfuhren diese Richtungen eine erneute Betonung. Das zweite Kluftsystem dürfte jüngeren, tertiären Alters sein. In diese Zeit, wahrscheinlich in noch jüngere Zeitabschnitte gehören dann auch die Brüche, die die Estländische Tafel heute begrenzen.
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  • 17
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    International journal of earth sciences 18 (1927), S. 298-298 
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  • 18
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    International journal of earth sciences 18 (1927), S. 298-299 
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  • 19
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    International journal of earth sciences 18 (1927), S. 134-138 
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  • 20
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    International journal of earth sciences 18 (1927), S. 302-305 
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  • 21
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    International journal of earth sciences 18 (1927), S. 308-320 
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  • 22
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    International journal of earth sciences 18 (1927), S. 300-301 
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  • 23
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    International journal of earth sciences 18 (1927), S. 306-307 
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  • 24
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    International journal of earth sciences 18 (1927), S. 350-395 
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  • 25
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    International journal of earth sciences 18 (1927), S. 402-405 
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  • 26
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    International journal of earth sciences 18 (1927), S. 415-416 
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  • 27
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    The European physical journal 39 (2004), S. 169-197 
    ISSN: 1434-6036
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    Topics: Physics
    Notes: Abstract. We present an analysis, based on a phenomenological set of Generalised Navier-Stokes equations, of Heterodyne Detected Transient Gratings on supercooled molecular liquids of anisotropic molecules. This set of equations generalises equations proven in Franosch, Latz and Pick [24] for the same type of liquids. It also takes into account the three different sources generated by the laser pumping process pertinent for these experiments. We give analytical expressions for the response functions that can be measured using the different polarisation of the experimental set-up. Specialising to the case of parallel polarisation (where longitudinal phonons are launched), we show that each response function is a sum of the same seven “elementary response functions” (ERFs) whose time and temperature evolutions are individually analysed. We also show that the response functions corresponding to two of the sources can be directly connected to the Laplace Transform of a light scattering signal. The ERFs generated by the heat-absorption process, which is the third source, are of a different nature. They do not have the same time and temperature behaviours and they can provide, inter alia, unique information on the rotation-translation coupling function characteristic of these liquids.
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  • 28
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    The European physical journal 39 (2004), S. 199-205 
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    Topics: Physics
    Notes: Abstract. The superconducting proximity effect is measured in sandwiches of thin Pb films and the alkali metals Cs, Rb, K and Na. The T c -dependence provides information about the interface barriers between Pb and the alkalis. Such a barrier is particularly large in Pb/Cs sandwiches. It is not due to impurities or oxydation. In the presence of a sufficiently strong barrier a special form of the Cooper limit can be applied to calculate the transition temperature of the sandwich.
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  • 29
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    The European physical journal 39 (2004), S. 219-227 
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    Topics: Physics
    Notes: Abstract. We study an atom-phonon coupling model introduced recently for spin-conversion phenomenon. The originality of this model, performed on a linear chain of atoms, is that the elastic force constant values of the spring linking two atoms depends on their electronic states. This leads to introduce naturally in the chain long- and short-range interactions, which appear respectively like a Zeeman and an exchange interactions. The exchange-like interaction can be ferro-, antiferro- or equal to zero. The effects of long-range interactions have already been studied. Here we study those of the short-range interaction. Some parts of the chain phase diagram are analysed and the main features of the experimental behaviours of spin conversion compounds are qualitatively reproduced.
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    The European physical journal 39 (2004), S. 229-234 
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    Topics: Physics
    Notes: Abstract. Within a new class of anthracene-like molecules, namely tetrafluoro-acridines, a systematic study of the structural and optical properties of single crystals of a prototypical member, 1,2,3,4-tetrafluoro-7(N,N)dimethyl-amino-acridine, is illustrated. Single crystals were grown by physical vapour transport using an inert gas flow as carrier, starting from a microcrystalline powder of the pure material. The crystal structure, determined by X ray diffraction, points out that the crystals are monoclinic with molecules stacked along the c axis. The results of atomic force microscopy on the ac face of a single crystal, at both low and molecular resolution, are consistent with the X-ray diffraction data. Preliminary results of the optical properties of the single crystal, in the unique configuration accessible due to the peculiar habit of the samples, are discussed.
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    The European physical journal 39 (2004), S. 241-247 
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    Notes: Abstract. In this paper we introduce a modified lattice Boltzmann model (LBM) with the capability of mimicking a fluid system with dynamic heterogeneities. The physical system is modeled as a one-dimensional fluid, interacting with finite-lifetime moving obstacles. Fluid motion is described by a lattice Boltzmann equation and obstacles are randomly distributed semi-permeable barriers which constrain the motion of the fluid particles. After a lifetime delay, obstacles move to new random positions. It is found that the non-linearly coupled dynamics of the fluid and obstacles produces heterogeneous patterns in fluid density and non-exponential relaxation of two-time autocorrelation function.
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    The European physical journal 41 (2004), S. 289-294 
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    Topics: Physics
    Notes: Abstract. We propose a description of the electronic properties of Ce alloys as an inhomogeneous mixture of two components: one containing magnetic Ce ions with an RKKY interaction J H between them, and the other described as a collection of Kondo impurities with exchange interaction J K . Both J H and J K are assumed to depend on a composition parameter X, with a Gaussian distribution around a value X 0 (near to the expectation value of X), related to the experimental composition parameter x of the alloy. When the concentration of the Kondo impurities is large, the specific heat C displays non-Fermi liquid behavior over a wide temperature range. The main qualitative features of C/T as a function of temperature T observed in several Ce alloys are reproduced using simple J H (X) and J K (X) dependences.
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  • 33
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    Notes: Abstract. The electronic structure of the strongly Coulomb correlated cuprate CuGeO3 has been calculated by the local-density-approximation method (LDA + U). The parameter U was varied from 0 to 8 eV. The results of the band-structure calculations are compared with experimental data obtained by means of X-ray photoelectron and resonant X-ray emission spectroscopy methods (Cu L $\alpha$ and O K $\alpha$ X-ray emission spectra). It is established that a LDA + U calculation with U = 4 eV reproduces well the X-ray photoelectron and X-ray resonant emission spectral data.
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    The European physical journal 41 (2004), S. 365-375 
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    Notes: Abstract. The ground-state energy E 0 of a spin glass is an example of an extreme statistic. We consider the large deviations of this energy for a variety of models when the number of spins N goes to infinity. In most cases, the behavior can be understood qualitatively, in particular with the help of semi-analytical results for hierarchical lattices. Particular attention is paid to the Sherrington-Kirkpatrick model; after comparing to the Tracy-Widom distribution which follows from the spherical approximation, we find that the large deviations give rise to non-trivial scaling laws with N.
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    The European physical journal 41 (2004), S. 377-382 
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    Notes: Abstract. The formulation of the phase-field problem due to Wheeler et al. [Physica D 66, 243 (1993)] has been adopted and extended as a tool for solidification research by many groups around the World. However, an intrinsic problem of this model is that it couples two physically distinct anisotropies, those associated with the surface energy of the solid-liquid interface and attachment kinetics, into a single anisotropy parameter. In this paper we present a simple extension to the Wheeler model in which we show that introducing a complex form of the anisotropy function allows these two physical parameters to be decoupled.
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    The European physical journal 41 (2004), S. 395-412 
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    Notes: Abstract. We introduce new fast canonical local algorithms for discrete and continuous spin systems. We show that for a broad selection of spin systems they compare favorably to the known ones except for the Ising $\pm$ 1 spins. The new procedures use discretization scheme and the necessary information have to be stored in computer memory before the simulation. The models for testing discrete spins are the Ising $\pm$ 1, the general Ising S or Blume-Capel model, the Potts and the clock models. The continuous spins we examine are the O(N) models, including the continuous Ising model (N = 1), the $\phi^4$ Ising model (N = 1), the XY model (N = 2), the Heisenberg model (N = 3), the $\phi^4$ Heisenberg model (N = 3), the O(4) model with applications to the SU(2) lattice gauge theory, and the general O(N) vector spins with $N\ge5$ .
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    Notes: Abstract. The Tool-Narayanaswamy-Moynihan (TNM) phenomenological model is widely accepted in order to describe the structural relaxation of glasses. However several quantitative discrepancies can be found in the literature that cannot be entirely ascribed to the experimental errors. In this work we compare the predictive power of two recently proposed configurational entropy approaches extending the TNM formalism. Both of them change the treatment of non linearity by adding a free parameter. We use Differential Scanning Calorimetry (DSC) experiments in order to test the models in two different polymers. One of them is a commercial PMMA sample, the other is a side chain liquid crystal azo-benzene polymer properly synthesized for optical nanorecording purposes. Different results were found for the two systems. In the PMMA sample only one of the new models was able to improve the agreement between DSC experiments and theory with respect to the TNM model, whereas in the second polymer both the approaches were able to describe the experiments better than TNM model.
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    The European physical journal 39 (2004), S. 351-356 
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    Notes: Abstract. We explore the effects of spike-timing-dependent plasticity (STDP) on weak signal transmission in a noisy neural network. We first consider the network where an ensemble of independent neurons, which are subjected to a common weak signal, are connected in parallel to a single postsynaptic neuron via excitatory synapses. STDP can make the signal transmission more efficient, and this effect is more prominent when the presynaptic activities exhibit some correlations. We further consider a two-layer network where there are only couplings between two layers and find that postsynaptic neurons can fire synchronously under suitable conditions. Both the reliability and timing precision of neuronal firing in the output layer are remarkably improved with STDP. These results indicate that STDP can play crucial roles in information processing in nervous systems.
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    The European physical journal 39 (2004), S. 357-363 
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    Notes: Abstract. We consider a simple model for the unfolding of RNA tertiary structure under dynamic loading. The opening of such a structure is regarded as a two step process, each corresponding to the overcoming of a single energy barrier. The resulting two-barrier energy landscape accounts for the dependence of the unfolding kinetics on the pulling rate. Furthermore at intermediate force, the two barriers cannot be distinguished by the analysis of the opening kinetic, which turns out to be dominated by a single macro-barrier, whose properties depend non-trivially on the two single barriers. Our results suggest that in pulling experiments on RNA molecule containing tertiary structures, the details of the single kinetic barriers can only be obtained using a low pulling rate value, or in the high force regime.
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    The European physical journal 39 (2004), S. 365-375 
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    Notes: Abstract. Many crystalline networks can be viewed as decorations of triply periodic minimal surfaces. Such surfaces are covered by the hyperbolic plane in the same way that the Euclidean plane covers a cylinder. Thus, a symmetric hyperbolic network can be wrapped onto an appropriate minimal surface to obtain a 3d periodic net. This requires symmetries of the hyperbolic net to match the symmetries of the minimal surface. We describe a systematic algorithm to find all the hyperbolic symmetries that are commensurate with a given minimal surface, and the generation of simple 3d nets from these symmetry groups.
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    The European physical journal 39 (2004), S. 447-451 
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    Notes: Abstract. We study the problem of a magnetic polaron in an one-dimensional antiferromagnetic semiconductor (ferron). We obtain an analytical solution for the distortion produced in the antiferromagnetic structure due to the presence of a charge carrier bound to an impurity. The region in which the charge carrier is trapped is of the order of the lattice constant (small ferron) but the distortion of the magnetic structure extends over a much larger distance. It is shown that the presence of this distortion makes the ferron more stable, and introduces a new length scale in the problem.
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    Notes: Abstract. Nanoparticles of zinc substituted Mg-ferrite with compositions Mg(1-x)Zn x Fe2O4 (x = 0.15, 0.30 and 0.50) having particle sizes in the range 6.4 nm to 21.4 nm prepared by the co-precipitation method were characterized by 57Fe Mössbauer spectroscopy, X-ray diffratometry and AC magnetic susceptibility measurements. Mössbauer measurements at room temperature and down to 20 K clearly indicate presence of superparamagnetic particles in all the samples. AC magnetic susceptibility data show lowering of blocking temperature with decrease of particle size. Superparamagnetic relaxation was observed for larger particle size in samples with higher Zn content, which is attributed to the weakening of A-B exchange interaction in ferrite lattice due to replacement of Fe3 + in tetrahedral site by Zn2 + ions.
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    The European physical journal 37 (2004), S. 465-471 
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    Notes: Abstract. The recently developed energy-scale-dependent Composite Operator Method is applied to the single-impurity Anderson model. A fully self-consistent solution is given and analyzed. At very low temperatures, the density of states presents, on the top of the high-energy background, a Kondo-like peak whose parameter dependence is discussed in detail. The proposed method reproduces the exact results known in the literature with very low numerical effort and it is applicable for arbitrary values of the external parameters.
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    The European physical journal 37 (2004), S. 489-498 
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    Notes: Abstract. The problem of electrostatic potential distribution in superconductors is studied based on the microscopic theory of superconductors. Local chemical potential of the superconductor is introduced, and an approximation is made to BG theory, which is similar to the Thomas-Fermi (TF) method used in quantum mechanics. The electrostatic potential and charge distribution around an isolated vortex in type-II superconductors is discussed within the approximation. A correction to GL theory considering the electrostatic potential distribution is suggested.
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    The European physical journal 42 (2004), S. 113-117 
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    Notes: Abstract. In the present communication we have tried to study the substrate current behavior in the sub-micron devices after solving the second order differential equation using appropriate boundary conditions. Simple and accurate models for maximum lateral field, drain saturation voltage and for ionization length have been developed. The simulation result of ionization length shows a good match with the known result. Analysis also shows that dominant contributor to the error in the ionization length is not only because of the excess saturated voltage but also due to the channel length and the gate to source voltage. For sub-micron devices the saturation region shifts towards the source for higher drain voltage and larger gate oxide thickness.
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    The European physical journal 42 (2004), S. 103-112 
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    Notes: Abstract. We study the motion of envelope solitons on anharmonic atomic chains in the presence of dissipation and thermal fluctuations. We consider the continuum limit of the discrete system and apply an adiabatic perturbation theory which yields a system of stochastic integro-differential equations for the collective variables of the ansatz for the perturbed envelope soliton. We derive the Fokker-Planck equation of this system and search for a statistically equivalent system of Langevin equations, which shares the same Fokker-Planck equation. We undertake an analytical analysis of the Langevin system and derive an expression for the variance of the soliton position Var[x s ] which predicts a stronger than linear time dependence of Var[x s ] (superdiffusion). We compare these results with simulations for the discrete system and find they agree well. We refer to recent studies where the diffusion of pulse solitons were found to exhibit a superdiffusive behaviour on longer time scales.
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    The European physical journal 42 (2004), S. 123-129 
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    Notes: Abstract. Recent theoretical and empirical studies have focused on the topology of large networks of communication/interactions in biological, social and technological systems. Most of them have been studied in the scope of the small-world and scale-free networks’ theory. Here we analyze the characteristics of ant networks of galleries produced in a 2-D experimental setup. These networks are neither small-worlds nor scale-free networks and belong to a particular class of network, i.e. embedded planar graphs emerging from a distributed growth mechanism. We compare the networks of galleries with both minimal spanning trees and greedy triangulations. We show that the networks of galleries have a path system efficiency and robustness to disconnections closer to the one observed in triangulated networks though their cost is closer to the one of a tree. These networks may have been prevented to evolve toward the classes of small-world and scale-free networks because of the strong spatial constraints under which they grow, but they may share with many real networks a similar trend to result from a balance of constraints leading them to achieve both path system efficiency and robustness at low cost.
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    The European physical journal 39 (2004), S. 469-473 
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    Notes: Abstract. We derive the restricted optical-conductivity sum rule for a model with circulating orbital currents. It is shown that an unusual coupling of the vector potential to the interaction term of the model Hamiltonian results in a non-standard form of the sum rule. As a consequence, the temperature dependence of the restricted spectral weight could be compatible with existing experimental data for high-T c cuprates above the critical temperature T c . We extend our results to the superconducting state, and comment on the differences and analogies between these two symmetry-breaking phenomena.
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    Notes: Abstract. Production parameters are important for the production of desirable type of magnetic materials. The feasibility of low coercivity amorphous films production using a novel rotating cryostat (RC) technique for sensor application was investigated. Fe81Co13.5Si3.5C2 and Fe67Co18Si1B14 amorphous films was vaporised using a resistively heated furnace on to a liquid nitrogen cooled polyimide Kapton $^{\rm TM}$ substrate rotated at the speed of 1300 rpm. The Orthogonal design process was applied in order to systematically optimise the deposition process and parameters over the output functions for the production of low coercivity films. The results indicate that the process can be easily optimised at these level settings with the goal of having the low coercivity amorhous films. By comparing the output function differences with standard deviation for coercivity, the effects of all input parameters (furnace shape, furnace power, mass of material and the gap between substrate and source) on coercivity values of films were analysed. Furthermore, the amorphous nature of these films was confirmed by X-ray measurement.
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    The European physical journal 39 (2004), S. 475-481 
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    Notes: Abstract. On the basis of our former work and by means of the decomposition-decimation method, we study the splitting rules for the second hierarchy of the electronic energy spectra for two-dimensional Fibonacci-class quasicrystals with one kind of atom and two bond lengths. It is found that every line of the sub-spectra for n x n and (n + 1) x (n + 1) clusters of FC(n) $(n \geq 2)$ splits according to the type Y‘(n-1)-2-1 and type Y n-2-1 respectively. The one for n x (n + 1) clusters of FC(n) consists of three sub-subbands when $n \le 2$ , and five sub-subbranches when $n \ge 3$ . The general formulae of the number of energy levels for the spectra of the second hierarchy are obtained. The analytical results are confirmed by numerical simulations.
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    The European physical journal 39 (2004), S. 499-512 
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    Notes: Abstract. We present the statistical-mechanical theory of semiflexible polymers based on the connection between the Kratky-Porod model and the quantum rigid rotator in an external homogeneous field, and treatment of the latter using the quantum mechanical propagator method. The expressions and relations existing for flexible polymers can be generalized to semiflexible ones, if one replaces the Fourier-Laplace transform of the end-to-end polymer distance, 1/(k 2/3 + p), through the matrix $\tilde{P}(k,p) = (I + ikDM)^{-1}D$ , where D and M are related to the spectrum of the quantum rigid rotator, and considers an appropriate matrix element of the expression under consideration. The present work provides also the framework to study polymers in external fields, and problems including the tangents of semiflexible polymers. We study the structure factor of the polymer, the transversal fluctuations of a free end of the polymer with fixed tangent of another end, and the localization of a semiflexible polymer onto an interface. We obtain the partition function of a semiflexible polymer in half space with Dirichlet boundary condition in terms of the end-to-end distribution function of the free semiflexible polymer, study the behaviour of a semiflexible polymer in the vicinity of a surface, and adsorption onto a surface.
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    The European physical journal 39 (2004), S. 491-498 
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    Notes: Abstract. Silver nanoparticles embedded in ZnO matrix were deposited onto fused silica substrates using high pressure (~40 Pa) d.c. sputtering techniques. The particle size in the films was tailored by varying the system pressure and substrate temperature, while the metal volume fraction was controlled by adjusting the relative time of sputtering of the targets. Blue-shift of the surface plasmon resonance peak was observed with the reduction in size and volume fraction of metal particles. A surface plasmon peak in the absorption spectra was found to be absent in the films with particle size and metal concentration below a critical value. A sharp absorption edge in the absorbance spectra within the UV-VIS range indicated semiconducting behavior of the ultrafine silver particles. Films deposited at lower substrate temperature showed a narrow distribution of nanoparticles, nearly spherical in shape. Increase in substrate temperature resulted in a non-uniform size and shape in the films due to the agglomeration of the nanoparticles. These size and shape distributions have a profound effect on the optical absorbance spectra and result in a broad and asymmetric surface plasmon band. A shape distribution introduced in the Maxwell-Garnett or Bruggeman effective medium theory was found to give a reasonable description of the experimentally observed optical absorption spectra.
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  • 53
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    Notes: Abstract. We report an experimental study indicating ultrafast creation and annihilation of space-charge domains in a semiconductor superlattice under the action of a THz field. Our experiment was performed for an InGaAs/InAlAs superlattice with the conduction electrons undergoing miniband transport. We applied to a superlattice a dc bias that was slightly smaller than a critical bias necessary for the formation of space-charge domains caused by a static negative differential conductivity. Additionally subjecting the superlattice to a strong THz field, resulted in a dc transport governed by the formation of domains if the frequency of the field was smaller than an upper frequency limit (~3 THz). From this frequency limit for the creation and annihilation of domains we determined the characteristic time of the domain buildup. Our analysis shows that the buildup time of domains in a wide miniband and heavily doped superlattice is limited by the relaxation time due to scattering of the miniband electrons at polar optic phonons. Our results are of importance for both an understanding of ultrafast dynamics of pattern formation in nanostructures and the development of THz electronic devices.
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    The European physical journal 39 (2004), S. 513-519 
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    Notes: Abstract. Directed spiral percolation (DSP), percolation under both directional and rotational constraints, is studied on the triangular lattice in two dimensions (2D). The results are compared with that of the 2D square lattice. Clusters generated in this model are generally rarefied and have chiral dangling ends on both the square and triangular lattices. It is found that the clusters are more compact and less anisotropic on the triangular lattice than on the square lattice. The elongation of the clusters is in a different direction than the imposed directional constraint on both the lattices. The values of some of the critical exponents and fractal dimension are found considerably different on the two lattices. The DSP model then exhibits a breakdown of universality in 2D between the square and triangular lattices. The values of the critical exponents obtained for the triangular lattice are not only different from that of the square lattice but also different form other percolation models.
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    The European physical journal 39 (2004), S. 521-525 
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    Notes: Abstract. A square lattice is introduced into the Penna model for biological aging in order to study the evolution of diploid sexual populations under certain conditions when one single locus in the individual’s genome is considered as identifier of species. The simulation results show, after several generations, the flourishing and coexistence of two separate species in the same environment, i.e., one original species splits up into two on the same territory (sympatric speciation). As well, the mortalities obtained are in a good agreement with the Gompertz law of exponential increase of mortality with age.
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    Notes: Abstract. In this paper we present a theoretical study about the influence of the magneto-crystalline anisotropy on the magnetic properties of magnetic metallic trilayers Fe/Cr/Fe (110). The theory is based on a realistic phenomenological model which includes the following contributions to the free magnetic energy: Zeeman, cubic and uniaxial anisotropy, as well as bilinear and biquadratic exchange energies. The experimental parameters used here are based on experimental data known from the literature. We present numerical results of magnetization versus external applied field to illustrate the behavior of the system. Our numerical results show that in some situations the saturation field can not be correctly determined by magnetoresistance measures.
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    The European physical journal 39 (2004), S. 535-544 
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    Notes: Abstract. We study the effect of finite size population in Galam’s model [Eur. Phys. J. B 25, 403 (2002)] of minority opinion spreading and introduce neighborhood models that account for local spatial effects. For systems of different sizes N, the time to reach consensus is shown to scale as $\ln N$ in the original version, while the evolution is much slower in the new neighborhood models. The threshold value of the initial concentration of minority supporters for the defeat of the initial majority, which is independent of N in Galam’s model, goes to zero with growing system size in the neighborhood models. This is a consequence of the existence of a critical size for the growth of a local domain of minority supporters.
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    The European physical journal 38 (2004), S. 71-82 
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    Notes: Abstract. We have used linear stability analysis to study the depinning of an elastic chain with long range interactions submitted to a random pinning potential. In this paper, we provide, for the first time, evidence of a pronounced change from a strong pinning regime to a weak pinning regime. This change depends on the strength of disorder, and takes place only in finite size systems. For a given disorder, we show a characteristic length separating the weak pinning regime from the strong pinning regime. This length depends on the long range of the algebraic decay of the elastic couplings. The weak pinning regime is very well described by perturbation theory. As an example, we discuss more specifically the case of wetting of heterogeneous surfaces, where the change from a strong to a weak pinning regime could be induced in the wetting front by varying the surface tension of the liquid-air interface.
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    The European physical journal 38 (2004), S. 83-91 
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    Notes: Abstract. The stiffness exponents in the glass phase for lattice spin glasses in dimensions $d = 3,\ldots,6$ are determined. To this end, we consider bond-diluted lattices near the T = 0 glass transition point p *. This transition for discrete bond distributions occurs just above the bond percolation point p c in each dimension. Numerics suggests that both points, p c and p *, seem to share the same 1/d-expansion, at least for several leading orders, each starting with 1/(2d). Hence, these lattice graphs have average connectivities of $\alpha = 2dp\gtrsim1$ near p * and exact graph-reduction methods become very effective in eliminating recursively all spins of connectivity $\leq3$ , allowing the treatment of lattices of lengths up to L = 30 and with up to 105-106 spins. Using finite-size scaling, data for the defect energy width $\sigma(\Delta E)$ over a range of p 〉 p * in each dimension can be combined to reach scaling regimes of about one decade in the scaling variable $L(p-p^*)^{\nu^*}$ . Accordingly, unprecedented accuracy is obtained for the stiffness exponents compared to undiluted lattices (p = 1), where scaling is far more limited. Surprisingly, scaling corrections typically are more benign for diluted lattices. We find in $d = 3,\ldots,6$ for the stiffness exponents y 3 = 0.24(1), y 4 = 0.61(2), y 5 = 0.88(5), and y 6 = 1.1(1).
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    Notes: Abstract. The presence of experimental noise may greatly reduce the accuracy of experimentally determined growth and roughness exponents, which characterize a growing self-affine interface. A separate determination of the experimental noise enables a straightforward correction, which we demonstrate on experiments on the roughening of magnetic flux profiles in the critical state of YBa2Cu3O7-x thin films. After noise correction, we find that the magnetic field profile is characterized by a roughness exponent $\alpha = 0.75(6)$ . The growth exponent of the profiles is $\beta = 0.7(1)$ .
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    The European physical journal 38 (2004), S. 103-110 
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    Notes: Abstract. The importance of spatial organization for the evolutionary stability of trans-acting replicase systems ( $T\buildrel X \over \longrightarrow 2T)$ , where T is a general member of a combinatorial family including the special catalyst X, is now well established, by analytical and Monte Carlo models [1,2]. Complex formation as an intermediate step in replication ( $X + T\rightleftharpoons XT\to X + 2T)$ , besides refining the model, enhances co-localization of replicase X and templates T and is shown here to thereby contribute to the evolutionary stability of the catalyst. Applying the established individual molecule stochastic PRESS-framework [3], the performances of cooperative replication with and without intermediate complex formation are compared, and the beneficial effect of complex formation as enhancing stability is studied numerically under various conditions. The results obtained are of value for studies of prebiotic evolution, but also point towards a possible mechanism for stabilizing replication systems in adaptive molecular engineering.
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    The European physical journal 38 (2004), S. 111-115 
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    Notes: Abstract. Surface structures in the Te/Ni(111) system are revealed by using reflection high-energy electron diffraction combined with X-ray and ultraviolet photoelectron spectroscopies. At a 0.33 mono-layer (ML)-Te/Ni(111) surface, a reversible structural phase transition is observed with a transition temperature T c of 380 $^{\circ}$ C. The diffraction pattern from the low temperature phase is accompanied by streaks. The high and low temperature phases are characterized by $\sqrt{3} \times \sqrt{3} R\pm30^{\circ}$ and $3 \times \sqrt{3}$ rectangle, respectively. The mechanism of the phase transition is explained by the order-disorder transition with a rumpled chain model. Both 0.51 ML- and 0.44 ML-Te/Ni(111) surfaces exhibit the complex diffraction patterns accompanied by diffuse streaks. These surface structures are characterized by the $7 \times \sqrt{3}$ rectangle and $5 \sqrt{3} \times \sqrt{3} R \pm30^{\circ}$ , respectively. All diffuse streaks obtained at the above surfaces are consistently interpreted in the view of the ill-ordered arrangements of the well-ordered $\sqrt{3}$ linear chains. It is shown that the “ $\sqrt{3}$ linear structure” is the key in the Te/Ni(111) system.
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    The European physical journal 38 (2004), S. 117-126 
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    Notes: Abstract. We analyze the effects of the background velocity and the initial magnetic field correlations, and viscosities on the turbulent dynamo and the $\alpha$ -effect. We calculate the $\alpha$ -coefficients for arbitrary magnetic and fluid viscosities, background velocity and the initial magnetic field correlations. We explicitly demonstrate that the general features of the initial growth and late-time saturation of the magnetic fields due to the non-linear feedback are qualitatively independent of these correlations. We also examine the hydrodynamic limit of the magnetic field growth in a renormalization group framework and discuss the possibilities of suppression of the dynamo growth below a critical rotation. We demonstrate that for Kolmogorov-(K41) type of spectra the Ekman number $M \gtrsim 1/2$ for dynamo growth to occur.
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    The European physical journal 38 (2004), S. 127-138 
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    Notes: Abstract. We investigate the time-dependent flow of water around a solid triangular profile oscillating horizontally in a narrow rectangular container. The flow is quasi two-dimensional and using particle image velocimetry we measure 20 snapshots of the entire velocity field during a period of oscillation. From the velocity measurements we obtain the circulation of the vortices and study the vortex dynamics. The time-dependence of the flow gives rise to the formation of a jet-like flow structure which enhances the vorticity production compared to the time-independent case. We introduce a simple phenomenological model to describe the important dynamical parameters of the flow, i.e., the vortex circulation and the jet velocity. We solve the model analytically without viscous damping and find good agreement between the model predictions and our measurements. Our work adds to the recent effort to understand more complicated flows past sand-ripples and insect wings.
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    The European physical journal 38 (2004), S. 3-8 
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    Notes: Abstract. We have developed and tested a classical superconducting logic interface to a qubit prototype based on two macroscopically distinct quantum states of a vortex in a long Josephson junction. The initial state preparation as well as the readout of a qubit is demonstrated by using a relatively simple Rapid Single Flux Quantum (RSFQ) circuit. RSFQ logic appears as a very feasible choice for constructing an interface between superconducting qubits and room-temperature electronics.
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    The European physical journal 38 (2004), S. 9-12 
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    Notes: Abstract. We calculate the change in the correlation gap of armchair carbon nanotubes with uniaxial elastic strain. We predict that such a stretching will enlarge the correlation gap for all carbon nanotubes by a change that could be as large as several meV per percent of applied strain, in contrast with pure band structure calculations where no change for armchair carbon nanotubes is predicted. The correlation effects are considered within a self-consistent Hartree-Fock approximation to the Hubbard model with on-site repulsion only.
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    Notes: Abstract. The magnetic properties of the Zn2 FeV3O11 vanadate, characterized by a disordered distribution of diamagnetic Zn2 + and high-spin Fe3 + ions, are studied using magnetization and electron paramagnetic resonance (EPR) measurements. The dc susceptibility reveals antiferromagnetic interactions between Fe3 + spins with a Curie-Weiss temperature $\Theta = -58(1)$ K, followed by a transition to a frozen, spin-glass-like state at low temperature T f $\approx 2.55$ K, indicating an inhomogeneous magnetic ground state. The temperature variation of the EPR parameters confirms the antiferromagnetic coupling of Fe3 + spins at high temperatures, while a distinct divergence is observed at $T\approx 55$ K. This behavior is attributed to the inherent magnetic inhomogeneity of the system due to antiferromagnetic spin clusters.
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    The European physical journal 42 (2004), S. 337-344 
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    Notes: Abstract. The Gutzwiller variational wave function is shown to correspond to a particular disentanglement of the thermal evolution operator, and to be physically consistent only in the temperature range $U\ll kT\ll E_F$ , the Fermi energy of the non-interacting system. The correspondence is established without using the Gutzwiller approximation. It provides a systematic procedure for extending the ansatz to the strong-coupling regime. This is carried out to infinite order in a dominant class of commutators. The calculation shows that the classical idea of suppressing double occupation is replaced at low temperatures by a quantum RVB-like condition, which involves phases at neighboring sites. Low-energy phenomenologies are discussed in the light of this result.
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    The European physical journal 42 (2004), S. 361-365 
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    Notes: Abstract. A highly collimated beam of protons ( $\approx$ 1 MeV) entering the channel of a monocrystal film forms at a certain depth an extremely sharp (〈0.005 nm) and relatively long (some monolayers of the crystal) focusing area where the increase of the flux density can reach thousand times. Impinging atoms in this focusing area can undergo nuclear or atomic reactions with proper foreign dopants which disappear if the crystal is tilted from this position by only 10-3 radians. This effect can be called channeling superfocusing, in contrast to the ordinary fluxpeaking where the increase of flux density reaches only few times. Results are predicted by quantum mechanical model calculations and confirmed by channeling Monte Carlo simulations accounting for several properties of the real lattice.
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    The European physical journal 42 (2004), S. 381-390 
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    Notes: Abstract. We are interested in the thermal diffusion of a solitary wave in the anisotropic Heisenberg spin chain (HSC) with nearest-neighbor exchange interactions. The shape of the solitary wave is approximated by soliton solutions of the continuum HSC with on-site anisotropy, restricting ourselves to large width excitations. Temperature is simulated by white noise coupled to the system. The noise affects the shape and position of the solitary wave and produces magnons. Using implicit collective variables we describe the former effects and neglect magnons (i.e. we use the so-called adiabatic approximation). We derive stochastic equations of motion for the collective variables which we treat both analytically and numerically. Predictions for the mean values and the variances of the variables obtained from these equations are compared with the corresponding results from spin dynamics simulations. For the soliton position we find reasonable agreement between spin dynamics and the results of the collective variable treatment, whereas we observe deviations for the other collective variables. The stochastic dynamics of the position shows both a standard Brownian and a super-diffusive component. These results are analogous to results for the isotropic case, previously studied by some of the authors. In the present article we discuss in particular how the anisotropy enters the stochastic equations of motion and the quantitative changes it causes to the diffusion.
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    The European physical journal 42 (2004), S. 407-414 
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    Notes: Abstract. The quiet times at a fixed point in space are investigated in a system close to or at a non-equilibrium phase transition. The statistics for such first-return times follow from the universality class of the dynamics and the ensemble: for a power-law waiting time distribution the exponent depends on the dimension and the underlying model. We study the two-dimensional Manna sandpile, with both the continously driven self-organized version and the tuned one. The latter has an absorbing state or depinning phase transition at a critical value of the control parameter. The connection to a driven interface in a random medium gives the exponent of the waiting time distribution. In the open ensemble, differences ensue due to the spatial inhomogeneity and the properties of the driving signal. For both ensembles, the waiting time distributions are found to exhibit logarithmic corrections to scaling.
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    The European physical journal 20 (2004), S. A13 
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    The European physical journal 22 (2004), S. 105-117 
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    Notes: Abstract. Motivated by the recent measurement of proton-proton spin-correlation parameters up to 2.5GeV laboratory energy, we investigate models for nucleon-nucleon (NN) scattering above 1GeV. Signatures for a gradual failure of the traditional meson model with increasing energy can be clearly identified. Since spin effects are large up to tens of GeV, perturbative QCD cannot be invoked to fix the problems. We discuss various theoretical scenarios and come to the conclusion that we do not have a clear phenomenological understanding of the spin dependence of the NN interaction above 1GeV.
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    The European physical journal 22 (2004), S. 97-104 
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    Notes: Abstract. We have constructed an isobar model for the $\eta$ -photoproduction on the proton in the energy region up to the photon lab energy K 0 = 3 GeV. The database involved into the fitting procedure includes precise results for the cross-section and for the T-asymmetry of the process $\gamma p\to\eta p$ near threshold obtained at MAMI and ELSA as well as recent results for the $\Sigma$ -asymmetry and for the angular distribution measured at higher energies in Grenoble and also more recent measurements performed at JLab for the photon energies up to 2 GeV. The model includes twelve nucleon resonances: S 11(1535), S 11(1650), S 11(1825), P 11(1440), P 13(1720), D 13(1520), D 15(1675), F 15(1680), F 17(1990), G 17(2190), G 19(2250), H 19(2220), and the background consisting of the nucleon pole term and the vector meson exchange in the t-channel. To explain the observed energy dependence of the integrated cross-section, two s-wave resonances, S 11(1650) and S 11(1825), have to be taken into account along with the dominating S 11(1535). The integrated cross-section as well as the angular distribution and $\Sigma$ -asymmetry predicted by the model are in good agreement with the data. Above the photon energy K 0 = 2 GeV, the calculated cross-section exhibits an appreciable dependence on the $\rho$ - and $\omega$ -meson contribution, whose coupling with nucleons is not well defined. Several versions of extending the model to higher energies are considered.
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    The European physical journal 22 (2004), S. 89-95 
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    Notes: Abstract. The pion-nucleon sigma-term is extracted on the basis of the soliton picture of the nucleon from the mass spectrum of usual and the recently observed exotic baryons, assuming that they have positive parity. The value found is consistent with that inferred by means of conventional methods from pion-nucleon scattering data. The study can also be considered as a phenomenological consistency check of the soliton picture of baryons.
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  • 76
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    Notes: Abstract. The dynamical effects of the entrance channel on the competition between quasifission and fusion processes, and on the evaporation residue formation are investigated. We have analyzed the results and compared our calculations with the experimental data obtained in the 16 O + 204 Pb and 96 Zr + 124 Sn reactions having very different mass asymmetries and leading to the 220 Th * compound nucleus. We have found that different partial capture cross-sections $\sigma_\ell^{\rm cap}(E)$ for these reactions lead to different fusion-quasifission competitions and, consequently, to different partial fusion cross-sections $\sigma_\ell^{\rm fus}(E)$ of the compound nucleus formed in the two reactions. The dynamical conditions also affect the fission-evaporation competition of the excited intermediate nuclei along the CN de-excitation cascade and, consequently, the evaporation residue formation.
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    The European physical journal 22 (2004), S. 149-155 
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    Notes: Abstract. We construct and apply to $\beta $ decays a truly neutral local quantum field that is entirely based upon momentum space Majorana spinors. We make the observation that theory with momentum space Majorana spinors of real C parities is equivalent to Dirac’s theory. For imaginary C parities, the neutrino mass can drop out from the single $\beta $ decay trace and reappear in $0\nu \beta\beta $ , a curious and in principle experimentally testable signature for a non-trivial impact of Majorana framework in polarization experiments.
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    The European physical journal 22 (2004), S. 125-148 
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    Notes: Abstract. We have measured differential cross-sections for \ensuremath{\rm pp} elastic scattering with internal fiber targets in the recirculating beam of the proton synchrotron COSY. Measurements were made continuously during acceleration for projectile kinetic energies between 0.23 and 2.59 GeV in the angular range $30^{\circ} \leq \theta_{\rm c.m.} \leq 90^{\circ}$ . Details of the apparatus and the data analysis are given and the resulting excitation functions and angular distributions presented. The precision of each data point is typically better than 4%, and a relative normalization uncertainty of only 2.5% within an excitation function has been reached. The impact on phase shift analysis as well as upper bounds on possible resonant contributions in lower partial waves are discussed.
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  • 79
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    Notes: Abstract. Within an improved scission point model, experimental data on the relative yield, mean value and variance of the total kinetic-energy distribution of fission fragments are described. It is shown that for a fixed mass and charge fragmentation, the potential energy of the scission configuration has several minima as a function of the deformation parameters of the fragments. The scission at these minima leads to a relatively enhanced yield of the fragments with a certain TKE and creates fine structures in the TKE-mass distribution which are different from those produced by the odd-even effect.
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  • 80
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    Notes: Abstract. A seven-quasiparticle isomer with $K^{\pi} = (49 /2^ + )$ and T 1/2 = 53 ( + 3 -7) ns has been identified in 179Ta. By comparing its excitation energy with results from multi-quasiparticle calculations that include the effects of blocking and residual nucleon-nucleon interactions, the isomer is assigned the $\pi^{3}$ (5/2 + [402], 7/2 + [404], $9/2^{-}[514]) \otimes \nu^{4}$ (5/2-[512], 7/2-[514], 7/2-[503], 9/2 + [624]) configuration. The decay of this isomer is found to be unusually fast, a feature that is attributed to a mixing with a specific collective level. The interaction strength is found to be orders of magnitude lower than that observed between interacting collective levels.
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    The European physical journal 22 (2004), S. 1-3 
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    Notes: Abstract. The mass of the 1/2 + $uudd\bar s$ pentaquark is calculated within the framework of a semirelativistic effective Hamiltonian approach to QCD with instanton-induced forces, using a diquark picture. This approximation allows a correct treatment of the confinement, assumed here to be a Y-junction. With the [ud] diquark mass fitted on the $\Lambda$ -baryon, the ground-state pentaquark is found around 2.2 GeV.
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  • 82
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    Notes: Abstract. The structure of the A/Z = 3 nucleus 15B has been investigated using the in-beam $\gamma$ -spectroscopy technique with a fragmentation reaction of a 36S beam on a 9Be target at 77.5 ${\rm MeV}\cdot A$ . The fragments were identified and selected by their energy loss and time of flight using the SPEG spectrograph. $\gamma$ -ray energies and intensities have been measured in coincidence with the projectile-like fragments. From this information as well as from the $\gamma\gamma$ -coincidence relationships a level scheme is proposed for 15B up to the neutron separation energy. The experimental results have been interpreted using shell model calculations in the psd valence space. Effects of the weakly bound nature of the valence neutrons have been observed.
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    The European physical journal 22 (2004), S. 9-12 
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    Notes: Abstract. A good reproduction of experimental excitation functions is obtained for the 1n reactions producing the elements with Z = 108, 110, 111 and 112 by the combined usage of the two-step model for fusion and the statistical decay code KEWPIE. Furthermore, the model provides reliable predictions of productions of the elements with Z = 113 and Z = 114 which will be a useful guide for plannings of experiments.
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    The European physical journal 22 (2004), S. 37-45 
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    Notes: Abstract. The Relativistic Hartree-Bogoliubov model is applied in the analysis of ground-state properties of Be, B, C, N, F, Ne and Na isotopes. The model uses the NL3 effective interaction in the mean-field Lagrangian, and describes pairing correlations by the pairing part of the finite-range Gogny interaction D1S. Neutron separation energies, quadrupole deformations, nuclear matter radii, and differences in radii of proton and neutron distributions are compared with recent experimental data.
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    The European physical journal 22 (2004), S. 13-16 
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    Notes: Abstract. Variation-after-projection (VAP) calculations in conjunction with the Hartree- Bogoliubov (HB) ansatz have been carried out for A = 68-88, N = Z nuclei. In this framework, the yrast spectra with $J^{\pi} \leqslant 10^{ + } $ , B(E2) transition probabilities and deformation parameter ( $\beta_{2}$ ) have been obtained. A pairing interaction for like particles as well as protons and neutrons has been included in the model for a two-body interaction.
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    Notes: Abstract. The laser ion source has been used for the study of the isotope shifts of neutron-deficient Eu isotopes. The extension of the region of applicability of the method by using the $\gamma $ - and $\beta$ -radiation detection is reported. We have measured the isotope shifts of the europium optical line 576.520 nm for $^{137\mbox{--}139,141,142m,143,144}{\rm Eu}$ . To increase the laser ion source efficiency an axial magnetic field (350 gauss) was applied. Nearly a twofold rise of the ionization efficiency for Eu was observed. By using the effect of optical ion bunching an increase of the selectivity was obtained. The isotope shift data for $^{139,141,142m,143,144}{\rm Eu}$ are in agreement with the previously measured isotope shifts for these nuclides. The new data for $^{137}{\rm Eu}$ and refined data for $^{138}{\rm Eu}$ point to a gradual increase of the deformation for these isotopes. Comparisons with microscopic-macroscopic calculations and calculations in the framework of the Hartree-Fock model were performed.
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    The European physical journal 41 (1927), S. 18-19 
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    The European physical journal 41 (1927), S. 20-23 
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    Notes: Zusammenfassung Es wird ein einfacher, von physikalischen Voraussetzungen freier Beweis dafür gegeben, daß man stets zu den gleichen inneren Quantenzahlen des Atomzustandes kommt, in welcher Reihenfolge man auch die Koppelung der einzelnen Elektronen vorgenommen denkt.
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    The European physical journal 41 (1927), S. 24-26 
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    Notes: Zusammenfassung Die Wellenmechanik gestattet die Boltzmann-Plancksche Statistik genau ebensogut zu interpretieren, wie die Bose-Einsteinsche oder die Pauli-Fermi-Diracsche. Nur erst, wenn es feststünde, daß an die wellenmechanischen Lösungen in der Tat bestimmte Symmetrieforderungen zu stellen sind, käme die Boltzmannsche Zählweise in Gefahr.
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    The European physical journal 41 (1927), S. 443-452 
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    Notes: Zusammenfassung Es wird gezeigt, daß sich die Theorie des lichtelektrischen Effekts aus der Schrödingerschen Wellengleichung deduzieren läßt. Es ergibt sich die Einsteinsche Gleichung und die räumliche Verteilung der austretenden Photoelektronen, in Übereinstimmung mit der Erfahrung. Ferner ergibt sich auch eine Deutung der Wienerschen Versuche.
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    The European physical journal 41 (1927), S. 493-506 
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    Notes: Zusammenfassung Es wird eine Zusammenstellung der Beobachtungsergebnisse über die Lichtzerstreuung und Polarisation des Lichtes in Suspensionen von größeren Teilchen (nahe der Wellenlänge des Lichtes) mitgeteilt und mit der Theorie verglichen. Es wird gezeigt, daß bei den untersuchten Suspensionen die Lichtzerstreuung nur qualitativ mit der Streuung an Elementarkugeln stimmt und eine bedeutende Beimengung von unpolarisiertem Lichte zu beobachten ist.
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    The European physical journal 41 (1927), S. 516-523 
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    Notes: Zusammenfassung Mit dem neuen Siegbahnschen Tubusspektrometer sind folgende K-Linien des Silbers und des Palladiums in erster Ordnung ausgemessen worden:α 2,α 1,β 3,β 1,β 2. Die Linienα(1 undβ 1 sind auch in der zweiten Ordnung absolut gemessen, und die Brechungsindizes in Kalkspat für die betreffenden Wellenlängen berechnet.
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    The European physical journal 41 (1927), S. 530-534 
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    Notes: Zusammenfassung Es wird eine neue Schaltung zur Messung des bei der thermischen Emission geladener Teilchen auftretenden Abkühlungseffektes unter Angabe einiger Messungen sowie weiterer Meßmöglichkeiten erläutert.
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    The European physical journal 41 (1927), S. 548-550 
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    Notes: Zusammenfassung Es wird versucht, die ungewöhnlichen Ergebnisse der genannten Arbeit darauf zurückzuführen, daß Druckmessungen an dem verwendeten heißkalten System mit gewöhnlichen Manometern unmöglich sind.
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    The European physical journal 41 (1927), S. 535-547 
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    Notes: Zusammenfassung Eine kritische Diskussion der Arbeiten von Güntherschulze über die Vorgänge vor der Kathode zeigt, daß von einer befriedigenden Theorie des Fallraumgebietes zurzeit wohl noch nicht die Rede sein kann und von dieser Seite her eine irgendwie eindeutige Beantwortung der Frage nach dem Ursprung der Lichtemission nicht zu geben ist. — Das Fehlen eines Wiedervereinigungsleuchtens in der positiven Säule und in den flachen Rümpfen erklärt sich einfach dadurch, daß in diesen Gebilden die Trägerkonzentrationen zu klein sind. Im Glimmlicht liegen die Verhältnisse sicher ganz anders und eine Übertragung der Befunde an der Säule auf die kathodischen Entladungsteile ist nicht ohne weiteres möglich. — Die Gründe für und gegen das Auftreten eines Wiedervereinigungsleuchtens in den einzelnen Teilen der Glimmentladung werden ausführlicher besprochen. Die Diskussion führt zu einem wenig erfreulichen Bild von dem derzeitigen Stand unserer Kenntnisse und mahnt zu Vorsicht bei allen apodiktischen Behauptungen.
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    The European physical journal 41 (1927), S. 619-635 
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    Notes: Zusammenfassung Die Ionisation des Hg-Dampfes durch Licht wird nach der Methode von Rouse und Giddings untersucht. Dabei ergibt sich quadratische Abhängigkeit der Ionisation vom Kern der Resonanzlinie λ 2537 Å. Durch Argonzusatz zeigt sich eine Verstärkung, durch geringste Wasserstoffmengen Zerstörung des Effekts. Daraus wird auf Mitwirkung metastabiler Zustände beim Zustandekommen der Ionisation geschlossen.
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    The European physical journal 41 (1927), S. 576-582 
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    Notes: Zusammenfassung Sowohl die Bose-Einsteinsche als die Fermi-Diracsche Statistik führt bei Anwendung auf ideale Gase zunächst zum Einsteinschen „Mischungsparadoxon“: für genügend tiefe Temperatur fällt der Druck oder die mittlere Energie vonN durchaus gleichen Molekülen diskontinuierlich anders aus als vonN beliebig wenig voneinander verschiedenen. — Wir zeigen, daß sich dieses Paradoxon vom Standpunkt der vieldimensionalen Wellenmechanik aus betrachtet durch folgende Bemerkungen löst: A. SindN voneinander zunächst durchaus verschiedene Moleküle (Massen MIMII ...M N) in ein Gefäß von allgemeiner Form eingeschlossen und entsprechen also wellenmechanisch den verschiedenen zulässigen Bewegungszuständen dieses Gases die verschiedenen Eigenschwingungen eines 3N-dimensionalen Hohlraumes, so hat man bei dem Aufbau des kanonischen Ensembles jede dieser Eigenschwingungen konsequent mit dem Gewicht 1 zu zählen. Fallen dann bei einer kontinuierlichen Veränderung, sei es der Gefäßform, sei es der Molekülmassen die Eigenwerte mehrerer Eigenschwingungen zusammen, so hat man im kanonischen Ensemble die entsprechenden Energieniveaus entsprechend vielfach zu zählen. Dabei kann offenbar nie die für das Mischungsparadoxon charakteristische diskontinuierliche Veränderung solcher Größen, wie mittlerer Energie oder Druck, auftreten. — B. Für wechselseitig durchdringliche Moleküle führt die 3N-dimensionale Wellenmechanik mit der unter A. angegebenen Zählweise zur Boltzmannschen Statistik, falls die Massen MIMII ...M N) durchaus oder gruppenweise gleiche Werte haben. — O. Für wechselseitig undurchdringliche Moleküle sind die 3N-dimensionalen Eigenschwingungen an die „Diagonalforderung“ gebunden. Für durchaus gleiche Moleküle gelangt man so 1) zur Heisenberg-Diracschen Erweiterung des Paulischen Verbotes und also zur Fermischen Statistik. Für durchaus oder gruppenweise verschiedene Molekülmassen läßt sich wegen rechnerischer Schwierigkeiten die Statistik nicht näher ausführen, das Nichtauftreten des Mischungsparadoxons ist aber bei der zugrunde gelegten Zählweise (siehe A.) bestätigt.
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    The European physical journal 40 (1927), S. 351-363 
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    Notes: Zusammenfassung Berechnung der Dichteverteilung als Funktion der Höhe und der Zeit in einer Lösung endlicher Höhe unter der Wirkung von Schwere und Diffusion. Abschätzung der „Sedimentationszeit“. Aufklärung scheinbarer experimenteller Widersprüche.
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    The European physical journal 40 (1927), S. 364-367 
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    Notes: Zusammenfassung Auf die Verteilungsformel für die Gesamtheit der Höhenlagen eines schweren Brownschen Teilchens über einem ebenen Boden, die eine unsymmetrische Fehlerverteilung darstellt, werden einige Betrachtungen der Fehlerrechnung bezüglich der Ermittlung des wahrscheinlichsten Mittelwerts aus einer empirischen Beobachtungsreihe und das Präzisionsmaß für denselben angestellt.
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    The European physical journal 40 (1927), S. 402-402 
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