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Get Support. Feedback Please let us know what you think of our products and services. Give Feedback. Get Information. Share This Special Issue. Institute of Physics, Kazan Federal University, Kazan , Russia Interests: statistical mechanics; quantum entanglement and quantum information; complex systems. Department of Energy Engineering, Faculty of Mechanical Engineering, Budapest University of Technology and Economics, Budapest, Hungary Interests: continuum mechanics and thermodynamics; internal variables; kinetic theory; numerical and analytical solutions of partial differential equations.

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Dear Colleagues, Non-equilibrium statistical mechanics has a long history and diverse aspects. Download All Papers. Order results. Content type Publication Date. Normal Extended Compact. Select all.

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Error Ops Open Access Article. Abstract By using the kinetic interaction principle, the quons statistics in the framework of kinetic theory is introduced. The related nonlinear Fokker-Planck equation is [ By using the kinetic interaction principle, the quons statistics in the framework of kinetic theory is introduced.

The related nonlinear Fokker-Planck equation is introduced and the corresponding steady distribution describing quons statistics of type I and type II is derived. Full article.

## Climate Fluctuations and Non-equilibrium Statistical Mechanics: An Interdisciplinary Dialogue

This formulation shows how inverse processes take [ This formulation shows how inverse processes take part in the interaction and introduce a non-linearity, necessary for the bifurcation of quantum measurement. A statistical analysis of the ensemble of initial states of the measurement device shows how microscopic details can influence the transition to a final state. Thus, the proposed scheme serves as a candidate mechanism for the quantum measurement process. Open Access Feature Paper Article.

Abstract There are limits of validity of classical constitutive laws such as Fourier and Navier-Stokes equations. Phenomena beyond those limits have been experimentally found many decades ago. However, it is still not clear what theory would be appropriate to model different non-classical phenomena under [ There are limits of validity of classical constitutive laws such as Fourier and Navier-Stokes equations.

## Nonequilibrium Statistical Physics

However, it is still not clear what theory would be appropriate to model different non-classical phenomena under different conditions considering either the low-temperature or composite material structure. In this paper, a modeling problem of rarefied gases is addressed.

http://outer-edge-design.com/components/facebook/4129-what-is.php The discussion covers the mass density dependence of material parameters, the scaling properties of different theories and aspects of how to model an experiment. In the following, two frameworks and their properties are presented. One of them is the kinetic theory based Rational Extended Thermodynamics; the other one is the non-equilibrium thermodynamics with internal variables and current multipliers.

In order to compare these theories, an experiment on sound speed in rarefied gases at high frequencies, performed by Rhodes, is analyzed in detail. It is shown that the density dependence of material parameters could have a severe impact on modeling capabilities and influences the scaling properties. The vertical axis denotes the relative speed of sound, i.

The relevant points are emphasized by red squares. Here, the red boxes show the region of interest together with the extrapolation to zero density. The dashed line shows the behavior of the Navier-Stokes-Fourier equations. The red dashed line shows the results of Arima et al.

- Nonequilibrium Statistical Physics.
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Open Access Communication. Treumann and Wolfgang Baumjohann. Abstract The entropy force is the collective effect of inhomogeneity in disorder in a statistical many particle system. We explain what information can be deduced from the current noise measurement in mesoscopic systems. As an important application of the noise measurement to statistical physics, we describe our experimental work on the current and current noise in an electron interferometer, which is the first experimental test of FT in quantum regime. Our attempt will shed new light in the research field of mesoscopic quantum statistical physics.

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Abstract Mesoscopic systems - small electric circuits working in quantum regime - offer us a unique experimental stage to explorer quantum transport in a tunable and precise way. Images from this publication. See all images 10 Free text. Figure 1. Its position is thermally fluctuating.