When does a Boltzmannian equilibrium exist?

In Charlotte Werndl & Roman Frigg, [no title] (2016)
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Abstract

The received wisdom in statistical mechanics is that isolated systems, when left to themselves, approach equilibrium. But under what circumstances does an equilibrium state exist and an approach to equilibrium take place? In this paper we address these questions from the vantage point of the long-run fraction of time definition of Boltzmannian equilibrium that we developed in two recent papers. After a short summary of Boltzmannian statistical mechanics and our definition of equilibrium, we state an existence theorem which provides general criteria for the existence of an equilibrium state. We first illustrate how the theorem works with a toy example, which allows us to illustrate the various elements of the theorem in a simple setting. After a look at the ergodic programme, we discuss equilibria in a number of different gas systems: the ideal gas, the dilute gas, the Kac gas, the stadium gas, the mushroom gas and the multi-mushroom gas. In the conclusion we briefly summarise the main points and highlight open questions.

Other Versions

reprint Werndl, Charlotte; Frigg, Roman (2023) "When Does a Boltzmannian Equilibrium Exist?". In Soto, Cristián, Current Debates in Philosophy of Science: In Honor of Roberto Torretti, pp. 247-273: Springer Verlag (2023)

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Author Profiles

Charlotte Sophie Werndl
London School of Economics
Roman Frigg
London School of Economics

References found in this work

Taking Thermodynamics Too Seriously.Craig Callender - 2001 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 32 (4):539-553.
The Principles of Statistical Mechanics.Richard C. Tolman - 1939 - Philosophy of Science 6 (3):381-381.

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