English

Chaos, Ergodicity and Equilibria in a Quantum Kac Model

Mathematical Physics 2018-06-12 v2 math.MP

Abstract

We introduce quantum versions of the Kac Master Equation and the Kac Boltzmann Equation. We study the steady states of each of these equations, and prove a propagation of chaos theorem that relates them. The Quantum Kac Master Equation (QKME) describes a quantum Markov semigroup, while the Kac Boltzmann Equation describes a non-linear evolution of density matrices on the single particle state space. All of the steady states of the NN particle quantum system described by the QKME are separable, and thus the evolution described by the QKME is entanglement breaking. The results set the stage for a quantitative study of approach to equilibrium in quantum kinetic theory, and a quantitative study the rate of destruction of entanglement in a class of quantum Markov semigroups describing binary interactions.

Keywords

Cite

@article{arxiv.1804.10280,
  title  = {Chaos, Ergodicity and Equilibria in a Quantum Kac Model},
  author = {Eric A. Carlen and Maria C. Carvalho and Michael P. Loss},
  journal= {arXiv preprint arXiv:1804.10280},
  year   = {2018}
}
R2 v1 2026-06-23T01:37:31.665Z