Global Correlation and Local Information Flows in Controllable Non-Markovian Open Quantum Dynamics
Abstract
In a fully-controllable experiment platform for studying non-Markovian open quantum dynamics, we show that the non-Markovianity could be investigated from the global and local aspects. By mixing random unitary dynamics, we demonstrate non-Markovian and Markovian open quantum dynamics. From the global point of view, by tuning the base frequency we demonstrate the transition from the Markovianity to the non-Markovianity as measured by the quantum mutual information (QMI). In a Markovian open quantum process, the QMI decays monotonically, while it may rise temporarily in a non-Markovian process. However, under some circumstances, it is not sufficient to globally investigate the non-Markovianity of the open quantum dynamics. As an essential supplement, we further utilize the quantum Fisher information (QFI) flow to locally characterize the non-Markovianity in different channels. We demonstrate that the QMI in combination with the QFI flow are capable of measuring the non-Markovianity for a multi-channel open quantum dynamics.
Keywords
Cite
@article{arxiv.2202.13761,
title = {Global Correlation and Local Information Flows in Controllable Non-Markovian Open Quantum Dynamics},
author = {Xin-Yu Chen and Na-Na Zhang and Wan-Ting He and Xiang-Yu Kong and Ming-Jie Tao and Fu-Guo Deng and Qing Ai and Gui-Lu Long},
journal= {arXiv preprint arXiv:2202.13761},
year = {2022}
}
Comments
15 pages, 4 figures, to be published in npj Quantum Inf