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20132018
most citedRethinking Boltzmannian Equilibrium

40 citations · 71 across the 5 of their papers we have counts for

collaborators

11 papers

cond-mat.stat-mech2018

Can Somebody Please Say What Gibbsian Statistical Mechanics Says?

Roman Frigg, Charlotte Werndl

Gibbsian statistical mechanics (GSM) is the most widely used version of statistical mechanics among working physicists. Yet a closer look at GSM reveals that it is unclear what the…

cond-mat.stat-mech2016

Boltzmannian Equilibrium in Stochastic Systems

Charlotte Werndl, Roman Frigg

Equilibrium is a central concept of statistical mechanics. In previous work we introduced the notions of a Boltzmannian alpha-epsilon-equilibrium and a Boltzmannian gamma-varepsilo…

cond-mat.stat-mech2016★ 1 cited

When Does a Boltzmannian Equilibrium Exist?

Charlotte Werndl, Roman Frigg

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 a…

cond-mat.stat-mech2015★ 40 cited

Rethinking Boltzmannian Equilibrium

Charlotte Werndl, Roman Frigg

Boltzmannian statistical mechanics partitions the phase space of a system into macro-regions, and the largest of these is identified with equilibrium. What justifies this identific…

cond-mat.stat-mech2015★ 30 cited

Reconceptualising equilibrium in Boltzmannian statistical mechanics and characterising its existence

Charlotte Werndl, Roman Frigg

In Boltzmannian statistical mechanics macro-states supervene on micro-states. This leads to a partitioning of the state space of a system into regions of macroscopically indistingu…

physics.hist-ph2013

Explaining Thermodynamic-Like Behaviour In Terms of Epsilon-Ergodicity

Roman Frigg, Charlotte Werndl

Why do gases reach equilibrium when left to themselves? The canonical answer, originally proffered by Boltzmann, is that the systems have to be ergodic. This answer is now widely r…