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Between Waves and Diffusion: Paradoxical Entropy Production in an Exceptional Regime

机译:在波与扩散之间:异常情况下的悖论熵产生

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摘要

The entropy production rate is a well established measure for the extent of irreversibility in a process. For irreversible processes, one thus usually expects that the entropy production rate approaches zero in the reversible limit. Fractional diffusion equations provide a fascinating testbed for that intuition in that they build a bridge connecting the fully irreversible diffusion equation with the fully reversible wave equation by a one-parameter family of processes. The entropy production paradox describes the very non-intuitive increase of the entropy production rate as that bridge is passed from irreversible diffusion to reversible waves. This paradox has been established for time- and space-fractional diffusion equations on one-dimensional continuous space and for the Shannon, Tsallis and Renyi entropies. After a brief review of the known results, we generalize it to time-fractional diffusion on a finite chain of points described by a fractional master equation.
机译:熵生产率是过程中不可逆程度的公认指标。因此,对于不可逆过程,人们通常期望熵生产率在可逆极限内接近零。分数阶扩散方程式为这种直觉提供了一个引人入胜的试验平台,因为它们通过一参数过程组建立了将完全不可逆扩散方程式与完全可逆波动方程式连接的桥梁。熵产生悖论描述了当桥梁从不可逆扩散传递到可逆波时,熵生产率的非常不直观的增加。对于一维连续空间上的时间和空间分形扩散方程以及Shannon,Tsallis和Renyi熵,已经建立了这一悖论。在简短回顾了已知结果之后,我们将其推广到分数阶主方程所描述的有限点链上的时间分数扩散。

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