English

Exploiting Gaussian steering to probe non-Markovianity due to the interaction with a structured environment

Quantum Physics 2021-11-17 v1

Abstract

We put forward a measure based on Gaussian steering to quantify the non-Markovianity of continuous-variable (CV) Gaussian quantum channels. We employ the proposed measure to assess and compare the non-Markovianity of a quantum Brownian motion (QBM) channel, originating from the interaction with Ohmic and sub-Ohmic environments with spectral densities described by a Lorentz-Drude cutoff, both at high and low temperatures, showing that sub-Ohmic, high temperature environments lead to highly non-Markovian evolution, with cyclic backflows of Gaussian steerability from the environment to the system. Our results add to the understanding of the interplay between quantum correlations and non-Markovianity for CV systems, and could be implemented at the experimental level to quantify non-Markovianity in some physical scenarios.

Keywords

Cite

@article{arxiv.2104.12243,
  title  = {Exploiting Gaussian steering to probe non-Markovianity due to the interaction with a structured environment},
  author = {Massimo Frigerio and Samaneh Hesabi and Davood Afshar and Matteo G. A. Paris},
  journal= {arXiv preprint arXiv:2104.12243},
  year   = {2021}
}

Comments

10 pages, 8 figures