Universal features in the thermodynamics and heat transport by particles of any statistics
arXiv:1112.2891 · doi:10.1088/1742-6596/338/1/012002
Abstract
I discuss in parallel two universal phenomena: the independence of statistics of the heat capacity and entropy of ideal gases of the same, constant, density of states, on one hand, and the independence of statistics of the heat and entropy transport through one-dimensional channels, on the other hand. I show that there is a close similarity between the microscopic explanations of each of these phenomena.
11 pages, 5 figures, Proceedings of Advanced many-body and statistical methods in mesoscopic systems, June 27 -July 2, 2011, Constanta, Romania
References in corpus (7)
- Single-mode heat conduction by photons
- Electronic Refrigeration at the Quantum Limit
- The thermodynamic limit for fractional exclusion statistics
- Fractional exclusion statistics in general systems with interaction
- An ansatz for the exclusion statistics parameters in macroscopic physical systems described by fractional exclusion statistics
- Comment on "Statistical Distribution for Generalized Ideal Gas of Fractional-Statistics Particles", Phys. Rev. Lett. {\bf 73}, 922 (1994)
- Universal heat conductance of one-dimensional channels