paper

Nonextensive thermodynamics of a cluster consisting of Hubbard dimers ( and )

arXiv:cond-mat/0501126 · doi:10.1143/PTPS.162.70

Abstract

The thermodynamical property of a small cluster including Hubbard dimers, each of which is described by the two-site Hubbard model, has been discussed within the nonextensive statistics (NES). We have calculated the temperature dependence of the energy, entropy, specific heat and susceptibility for and , assuming the relation between the entropic index and the cluster size given by ( for dimers), which was previously derived by several methods. For relating the physical temperature to the Lagrange multiplier , two methods have been adopted: in the method A [Tsallis {\it et al.} Physica A {\bf 261} (1998) 534], and in the method B [Abe {\it et al.} Phys. Lett. A {\bf 281} (2001) 126], where denotes the Boltzman constant, , and the probability distribution of the th state. The susceptibility and specific heat of spin dimers described by the Heisenberg model have been discussed also by using the NES with the methods A and B. A comparison between results calculated by the two methods suggests that the method B may be better than the method A for small-scale systems.

8 pages, 4 figures, Proceedings of International Workshop of CN-Kyoto