Statistical Irreversible Thermodynamics in the Framework of Zubarev’s Nonequilibrium Statistical Operator Method
We describe the formalism of statistical irreversible thermodynamics constructed based on Zubarev’s nonequilibrium statistical operator (NSO) method, which is a powerful and universal tool for investigating the most varied physical phenomena. We present brief overviews of the statistical ensemble fo...
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| Veröffentlicht in: | Theoretical and mathematical physics Jg. 194; H. 1; S. 4 - 29 |
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| Format: | Journal Article |
| Sprache: | Englisch |
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Moscow
Pleiades Publishing
01.01.2018
Springer Nature B.V |
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| ISSN: | 0040-5779, 1573-9333 |
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| Abstract | We describe the formalism of statistical irreversible thermodynamics constructed based on Zubarev’s nonequilibrium statistical operator (NSO) method, which is a powerful and universal tool for investigating the most varied physical phenomena. We present brief overviews of the statistical ensemble formalism and statistical irreversible thermodynamics. The first can be constructed either based on a heuristic approach or in the framework of information theory in the Jeffreys-Jaynes scheme of scientific inference; Zubarev and his school used both approaches in formulating the NSO method. We describe the main characteristics of statistical irreversible thermodynamics and discuss some particular considerations of several authors. We briefly describe how Rosenfeld, Bohr, and Prigogine proposed to derive a thermodynamic uncertainty principle. |
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| AbstractList | We describe the formalism of statistical irreversible thermodynamics constructed based on Zubarev’s nonequilibrium statistical operator (NSO) method, which is a powerful and universal tool for investigating the most varied physical phenomena. We present brief overviews of the statistical ensemble formalism and statistical irreversible thermodynamics. The first can be constructed either based on a heuristic approach or in the framework of information theory in the Jeffreys-Jaynes scheme of scientific inference; Zubarev and his school used both approaches in formulating the NSO method. We describe the main characteristics of statistical irreversible thermodynamics and discuss some particular considerations of several authors. We briefly describe how Rosenfeld, Bohr, and Prigogine proposed to derive a thermodynamic uncertainty principle. |
| Author | Ramos, J. G. Rodrigues, C. G. Vasconcellos, A. R. Luzzi, R. |
| Author_xml | – sequence: 1 givenname: R. surname: Luzzi fullname: Luzzi, R. organization: Condensed Matter Physics Department, Institute of Physics “Gleb Wataghin,”, State University of Campinas-Unicamp – sequence: 2 givenname: A. R. surname: Vasconcellos fullname: Vasconcellos, A. R. organization: Condensed Matter Physics Department, Institute of Physics “Gleb Wataghin,”, State University of Campinas-Unicamp – sequence: 3 givenname: J. G. surname: Ramos fullname: Ramos, J. G. organization: Condensed Matter Physics Department, Institute of Physics “Gleb Wataghin,”, State University of Campinas-Unicamp – sequence: 4 givenname: C. G. surname: Rodrigues fullname: Rodrigues, C. G. email: cloves@pucgoias.edu.br organization: Escola de Ciências Exatas e da Computação, Pontifícia Universidade Católica de Goiás |
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| Title | Statistical Irreversible Thermodynamics in the Framework of Zubarev’s Nonequilibrium Statistical Operator Method |
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