Approach to Thermal Equilibrium in the Caldeira-Leggett Model
arXiv:0812.2520 · doi:10.1088/1751-8113/42/26/265303
Abstract
We provide an explicit analytical calculation that shows the asymptotic approach of the one dimensional Caldeira-Leggett model to thermal equilibrium in the high temperature and weak coupling limit. We investigate a free particle and a harmonic oscillator system, using both the Lindblad and the non-Lindblad type master equations for each case, and show that thermal equilibrium is reached exactly for the free particle and aproximately for the harmonic oscillator, irrespective of the initial preparation of the system. We also generalize our calculation to higher dimensions.
26 pages, no figures
References in corpus (4)
Cited by in corpus (6)
- Quantum linear Boltzmann equation
- Floquet Many-body Engineering: Topological and Many-body Physics in Phase Space Lattices
- Quantum kicked harmonic oscillator in contact with a heat bath
- Out of time ordered effective dynamics of a quartic oscillator
- Limitations of the Markovian approximation in the harmonic oscillator
- Minimal dissipation model for bipartite quantum systems at finite temperature