Macroscopic quantum entanglement between an optomechanical cavity and a continuous field in presence of non-Markovian noise

Fuente: arXiv
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Main Authors: Direkci, Su, Winkler, Klemens, Gut, Corentin, Hammerer, Klemens, Aspelmeyer, Markus, Chen, Yanbei
Format: Preprint
Published: 2023
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author Direkci, Su
Winkler, Klemens
Gut, Corentin
Hammerer, Klemens
Aspelmeyer, Markus
Chen, Yanbei
author_facet Direkci, Su
Winkler, Klemens
Gut, Corentin
Hammerer, Klemens
Aspelmeyer, Markus
Chen, Yanbei
contents Probing quantum entanglement with macroscopic objects allows us to test quantum mechanics in new regimes. One way to realize such behavior is to couple a macroscopic mechanical oscillator to a continuous light field via radiation pressure. In view of this, the system that is discussed comprises an optomechanical cavity driven by a coherent optical field in the unresolved sideband regime where we assume Gaussian states and dynamics. We develop a framework to quantify the amount of entanglement in the system numerically. Different from previous work, we treat non-Markovian noise and take into account both the continuous optical field and the cavity mode. We apply our framework to the case of the Advanced Laser Interferometer Gravitational-Wave Observatory and discuss the parameter regimes where entanglement exists, even in the presence of quantum and classical noises.
format Preprint
id arxiv_https___arxiv_org_abs_2309_12532
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Macroscopic quantum entanglement between an optomechanical cavity and a continuous field in presence of non-Markovian noise
Direkci, Su
Winkler, Klemens
Gut, Corentin
Hammerer, Klemens
Aspelmeyer, Markus
Chen, Yanbei
Quantum Physics
Probing quantum entanglement with macroscopic objects allows us to test quantum mechanics in new regimes. One way to realize such behavior is to couple a macroscopic mechanical oscillator to a continuous light field via radiation pressure. In view of this, the system that is discussed comprises an optomechanical cavity driven by a coherent optical field in the unresolved sideband regime where we assume Gaussian states and dynamics. We develop a framework to quantify the amount of entanglement in the system numerically. Different from previous work, we treat non-Markovian noise and take into account both the continuous optical field and the cavity mode. We apply our framework to the case of the Advanced Laser Interferometer Gravitational-Wave Observatory and discuss the parameter regimes where entanglement exists, even in the presence of quantum and classical noises.
title Macroscopic quantum entanglement between an optomechanical cavity and a continuous field in presence of non-Markovian noise
topic Quantum Physics
url https://arxiv.org/abs/2309.12532