Stationary Distribution and Thermodynamic Relation in Nonequilibrium Steady States(Frontiers in Nonequilibrium Physics-Fundamental Theory, Glassy & Granular Materials, and Computational Physics-)
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概要
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We describe our recent attempts toward statistical mechanics and thermodynamics for nonequilibrium steady states (NESS) realized, e.g., in a heat conducting system. Our first result is a simple expression of the probability distribution (of microscopic states) of a NESS. Our second result is a natural extension of the thermodynamic Clausius relation and a definition of an accompanying entropy in NESS. This entropy coincides with the normalization constant appearing in the above mentioned microscopic expression of NESS, and has an expression similar to the Shannon entropy (with a further symmetrization). The NESS entropy proposed here is a clearly defined measurable quantity even in a system with a large degrees of freedom. We numerically measure the NESS entropy in hardsphere fluid systems with a heat current, by observing energy exchange between the system and the heat baths when the temperatures of the baths are changed according to specified protocols.
- 2010-07-27
著者
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ITO Nobuyasu
Department of Applied Physics, The University of Tokyo
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KOMATSU Teruhisa
Department of Applied Physics, The University of Tokyo
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NAKAGAWA Naoko
College of Science, Ibaraki University
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SASA Shin-ichi
Department of Pure and Applied Sciences, The University of Tokyo
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TASAKI Hal
Department of Physics, Gakushuin University
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Tasaki Hal
Department Of Physics Gakushuin University
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Nakagawa Naoko
College Of Science Ibaraki University
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Sasa Shin-ichi
Department Of Pure And Applied Sciences The University Of Tokyo
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Sasa Shin-ichi
Department Of Physics Kyoto University
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Komatsu Teruhisa
Department Of Applied Physics The University Of Tokyo
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Ito Nobuyasu
Department Of Applied Physics Faculty Of Engineering The University Of Tokyo
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