For an equilibrium process, a path and its physically time-reversed path have equal probability after including their equilibrium starting weights. Conditional on their endpoints, this meansThis is the path version of detailed balance. A time-even order parameter is read backward without changing sign, while a transport flux changes sign. The Onsager--Machlup path probability implements this reversal in a coarse-grained stochastic description.
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Microscopic reversibility is a principle in statistical mechanics and thermodynamics that states that the underlying microscopic processes of a system can occur in either direction, and the statistical behavior of the system remains invariant when those processes are reversed. This idea is rooted in the concept that at the molecular or atomic level, the laws of physics—particularly the laws of motion—are time-invariant, meaning they don't change if time is reversed.