Hulse Austin, Schumacher Benjamin, Westmoreland Michael D
Department of Physics, Kenyon College, Gambier, OH 43022, USA.
Department of Mathematics, Denison University, Granville, OH 43023, USA.
Entropy (Basel). 2018 Mar 29;20(4):237. doi: 10.3390/e20040237.
We present an axiomatic framework for thermodynamics that incorporates information as a fundamental concept. The axioms describe both ordinary thermodynamic processes and those in which information is acquired, used and erased, as in the operation of Maxwell's demon. This system, similar to previous axiomatic systems for thermodynamics, supports the construction of conserved quantities and an entropy function governing state changes. Here, however, the entropy exhibits both information and thermodynamic aspects. Although our axioms are not based upon probabilistic concepts, a natural and highly useful concept of probability emerges from the entropy function itself. Our abstract system has many models, including both classical and quantum examples.
我们提出了一个热力学公理框架,该框架将信息作为一个基本概念纳入其中。这些公理既描述了普通的热力学过程,也描述了诸如麦克斯韦妖操作中获取、使用和擦除信息的过程。这个系统与先前的热力学公理系统类似,支持构建守恒量和一个支配状态变化的熵函数。然而,这里的熵展现出信息和热力学两个方面。尽管我们的公理并非基于概率概念,但一个自然且非常有用的概率概念从熵函数本身中浮现出来。我们的抽象系统有许多模型,包括经典和量子示例。