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Statistical Mechanics at Strong Coupling: A Bridge between Landsberg’s Energy Levels and Hill’s Nanothermodynamics

机译:强耦合的统计力学:Landsberg能量水平与山纳温动力学之间的桥梁

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摘要

We review and show the connection between three different theories proposed for the thermodynamic treatment of systems not obeying the additivity ansatz of classical thermodynamics. In the 1950s, Landsberg proposed that when a system comes into contact with a heat bath, its energy levels are redistributed. Based on this idea, he produced an extended thermostatistical framework that accounts for unknown interactions with the environment. A decade later, Hill devised his celebrated nanothermodynamics, where he introduced the concept of subdivision potential, a new thermodynamic variable that accounts for the vanishing additivity of increasingly smaller systems. More recently, a thermostatistical framework at strong coupling has been formulated to account for the presence of the environment through a Hamiltonian of mean force. We show that this modified Hamiltonian yields a temperature-dependent energy landscape as earlier suggested by Landsberg, and it provides a thermostatistical foundation for the subdivision potential, which is the cornerstone of Hill’s nanothermodynamics.
机译:我们审查并展示了三种不同理论之间的联系,提出了对不服从经典热力学的添加性Ansatz的系统的热力学处理。在20世纪50年代,Landsberg提出,当系统与热浴接触时,其能量水平被重新分配。基于这个想法,他生产了一个扩展的恒温统计框架,其占与环境的未知互动。十年后,希尔设计了他庆祝的纳米热动力学,在那里他介绍了细分潜力的概念,这是一种新的热力学变量,其占越来越小的系统的消失增量。最近,已经制定了强大耦合的恒温统计框架,以解释通过均衡力的汉密尔顿人的环境存在。我们表明,这种改进的汉密尔顿尼亚因Landsberg提出的提出的温度依赖的能量景观,它为细分潜力提供了恒温基础,这是山坡纳米热动力学的基石。

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