Non-Markovian Dynamics of Macroscopic Quantum Systems in Interaction with Non-Equilibrium Environments
Abstract
We study the dynamics of a macroscopic superconducting qubit coupled to two independent non-stationary reservoirs by using time-dependent perturbation theory. We show that an equilibrium environment surpasses the coherent evolution of the macroscopic qubit completely. When the qubit couples to two different reservoirs, exemplifying a non-equilibrium environment, the short-time dynamics is affected by the interference between two reservoirs, implying the non-additivity of effects of two reservoirs. The non-additivity can be traced back to a non-Markovian effect, even though two reservoirs are independently assumed to be Markovian. Explicitly, the non-equilibrium environment intensifies both coherent and incoherent parts of the evolution. Therefore, the macroscopic qubit would evolve more coherently but at the price of a shorter decoherence time.
Keywords
Cite
@article{arxiv.1709.05492,
title = {Non-Markovian Dynamics of Macroscopic Quantum Systems in Interaction with Non-Equilibrium Environments},
author = {Nasim Shahmansoori and Farhad Taher Ghahramani and Afshin Shafiee},
journal= {arXiv preprint arXiv:1709.05492},
year = {2018}
}
Comments
11 pages, 4 figures