Models of heat transport with microscopic reversibility

Piero Olla
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Abstract

The behavior of lattice models in which time reversibility is enforced at the level of trajectories (microscopic reversibility) is studied analytically. Conditions for ergodicity breaking are explored, and a few examples of systems characterized by an additional conserved quantity besides energy are presented. All the systems are characterized by ergodicity restoration when put in contact with a thermal bath, except for specific choices of the interactions between the atoms in the system and the bath. The study shows that the additional conserved quantities return to play a role in non-equilibrium conditions, with behaviors similar to those of some mesoscale systems, in which the transition rates satisfy detailed balance but not microscopic reversibility.
具有微观可逆性的热传输模型
除了系统中原子与浴槽之间相互作用的特定选择之外,所有系统在与热浴接触时都具有遍历性恢复的特征。研究表明,附加守恒量在非平衡条件下重新发挥作用,其行为类似于某些中尺度系统,在这些系统中,转变速率满足详细平衡,但不满足微观可逆性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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