On the Assumption of Initial Factorization in the Master Equation for Weakly Coupled Systems II: Solvable Models
Quantum Physics
2008-03-01 v2
Abstract
We analyze some solvable models of a quantum mechanical system in interaction with a reservoir when the initial state is not factorized. We apply Nakajima-Zwanzig's projection method by choosing a reference state of the reservoir endowed with the mixing property. In van Hove's limit, the dynamics is described in terms of a master equation. We observe that Markovianity becomes a valid approximation for timescales that depend both on the form factors of the interaction and on the observables of the reservoir that can be measured.
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Cite
@article{arxiv.quant-ph/0602185,
title = {On the Assumption of Initial Factorization in the Master Equation for Weakly Coupled Systems II: Solvable Models},
author = {K. Yuasa and S. Tasaki and P. Facchi and G. Kimura and H. Nakazato and I. Ohba and S. Pascazio},
journal= {arXiv preprint arXiv:quant-ph/0602185},
year = {2008}
}
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25 pages