Non-perturbative treatment of non-Markovian dynamics of open quantum systems
Abstract
We identify the conditions that guarantee equivalence of the reduced dynamics of an open quantum system (OQS) for two different types of environments - one a continuous bosonic environment leading to a unitary system-environment evolution and the other a discrete-mode bosonic environment resulting in a system-mode (non-unitary) Lindbladian evolution. Assuming initial Gaussian states for the environments, we prove that the two OQS dynamics are equivalent if both the expectation values and two-time correlation functions of the environmental interaction operators are the same at all times for the two configurations. Since the numerical and analytical description of a discrete-mode environment undergoing a Lindbladian evolution is significantly more efficient than that of a continuous bosonic environment in a unitary evolution, our result represents a powerful, non-perturbative tool to describe complex and possibly highly non-Markovian dynamics. As a special application, we recover and generalize the well-known pseudomodes approach to open system dynamics.
Keywords
Cite
@article{arxiv.1709.03509,
title = {Non-perturbative treatment of non-Markovian dynamics of open quantum systems},
author = {Dario Tamascelli and Andrea Smirne and Susana F. Huelga and Martin B. Plenio},
journal= {arXiv preprint arXiv:1709.03509},
year = {2018}
}
Comments
5+4 pages, 2 figures, Close to the version accepted for publication in Physical Review Letters