Hierarchy of Relaxation times and Residual Entropy: A Nonequilibrium Approach
arXiv:1802.10047 · doi:10.3390/e20030149
Abstract
We consider nonequilibrium (NEQ) states such as supercooled liquids and glasses that are described with use of internal variables. We classify the latter by state-dependent hierarchy of relaxation times to assess their relevance for irreversible contributions. Given an observation time τ_{obs}, we determine the window of relaxation times that divide the internal variables into active and inactive groups, the former playing a central role in the NEQ thermodynamics. Using this thermodynamics, we determine (i) a bound on the NEQ entropy and on the residual entropy, and (ii) the nature of isothermal relaxation of the entropy and the enthalpy in accordance with the second law. A theory that violates the second law such as the entropy loss view is shown to be internally inconsistent if we require it to be consistent with experiments. The inactive internal variables still play an indirect role in determining the temperature T(t), the pressure P(t), of the system, which deviate from their external values.
19 pages, 3 figures
References in corpus (7)
- Magnetization process of spin ice in a [111] magnetic field
- Where is the residual entropy of a glass hiding?
- Poincare Recurrence, Zermelo's Second Law Paradox, and Probabilistic Origin in Statistical Mechanics
- Is Structural Relaxation During Vitrification the Inverse of the Glass Transition?
- Complexity Thermodynamics, Equiprobability Principle, Percolation, and Goldstein's Conjectures
- A Rigorous Derivation of the Entropy Bound and the Nature of Entropy Variation for Non-equilibrium Systems during Cooling
- Some Rigorous Results Relating Nonequilibrium, Equilibrium, Calorimetrically Measured and Residual Entropies during Cooling
Cited by in corpus (5)
- Jensen Inequality and the Second Law
- The growth and development of living organisms from the thermodynamic point of view
- A First-Principles Nonequilibrium Deterministic Equation of Motion of a Brownian Particle and Microscopic Viscous Drag
- A Review of the System-Intrinsic Nonequilibrium Thermodynamics in Extended Space (MNEQT) with Applications
- Effects of Structural Inhomogeneity on Equilibration Processes in Langevin Dynamics