The Zeroth Law of Thermodynamics and Volume-Preserving Conservative Dynamics with Equilibrium Stochastic Damping
arXiv:1206.7079 · doi:10.1016/j.physleta.2013.12.028
Abstract
We propose a mathematical formulation of the zeroth law of thermodynamics and develop a stochastic dynamical theory, with a consistent irreversible thermodynamics, for systems possessing sustained conservative stationary current in phase space while in equilibrium with a heat bath. The theory generalizes underdamped mechanical equilibrium: , with and respectively representing phase-volume preserving dynamics and stochastic damping. The zeroth law implies stationary distribution . We find an orthogonality as a hallmark of the system. Stochastic thermodynamics based on time reversal is formulated: entropy production ; generalized "heat" , being "internal energy", and "free energy" never increases. Entropy follows . Our formulation is shown to be consistent with an earlier theory of P. Ao. Its contradistinctions to other theories, potential-flux decomposition, stochastic Hamiltonian system with even and odd variables, Klein-Kramers equation, Freidlin-Wentzell's theory, and GENERIC, are discussed.
25 pages
References in corpus (9)
- Stochastic thermodynamics, fluctuation theorems, and molecular machines
- Stochastic mechano-chemical kinetics of molecular motors: a multidisciplinary enterprise from a physicist's perspective
- Path-integral analysis of fluctuation theorems for general Langevin processes
- Stochastic Dynamical Structure (SDS) of Nonequilibrium Processes in the Absence of Detailed Balance. IV: Emerging of Stochastic Dynamical Equalities and Steady State Thermodynamics from Darwinian Dynamics
- Entropy Production of Brownian Macromolecules with Inertia
- Paths of fluctuation induced switching
- Stochastic thermodynamics for delayed Langevin systems
- Irreversible Thermodynamics in Multiscale Stochastic Dynamical Systems
- Analytical Mechanics in Stochastic Dynamics: Most Probable Path, Large-Deviation Rate Function and Hamilton-Jacobi Equation
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