Thermodynamic Equivalence of Certain Ideal Bose and Fermi Gases
arXiv:cond-mat/0406285 · doi:10.1016/j.physa.2005.03.039
Abstract
We show that the recently discovered thermodynamic equivalence between noninteracting Bose and Fermi gases in two dimensions, and between one-dimensional Bose and Fermi systems with linear dispersion, both in the grand-canonical ensemble, are special cases of a larger class of equivalences of noninteracting systems having an energy-independent single-particle density of states. We also conjecture that the same equivalence will hold in the grand-canonical ensemble for any noninteracting quantum gas with a discrete ladder-type spectrum whenever is small, where is the average particle number and its standard deviation, is the level spacing, is Boltzmann's constant, and is the temperature.
4 pages, 3 figures, Revtex