Thermalization in one- plus two-body ensembles for dense interacting boson systems
Chaotic Dynamics
2012-09-04 v2 Statistical Mechanics
Quantum Physics
Abstract
Employing one plus two-body random matrix ensembles for bosons, temperature and entropy are calculated, using different definitions, as a function of the two-body interaction strength \lambda for a system with 10 bosons (m=10) in five single particle levels (N=5). It is found that in a region \lambda \sim \lambda_t, different definitions give essentially same values for temperature and entropy, thus defining a thermalization region. Also, (m,N) dependence of \lambda_t has been derived. It is seen that \lambda_t is much larger than the \lambda values where level fluctuations change from Poisson to GOE and strength functions change from Breit-Wigner to Gaussian.
Cite
@article{arxiv.1205.6758,
title = {Thermalization in one- plus two-body ensembles for dense interacting boson systems},
author = {N. D. Chavda and V. K. B. Kota and V. Potbhare},
journal= {arXiv preprint arXiv:1205.6758},
year = {2012}
}
Comments
7 pages, 4 figures