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Hauptverfasser: Guo, Tengtao, Zhou, Yuxuan, Feng, Jiahui, Zhao, Xinyu, Xia, Yan
Format: Preprint
Veröffentlicht: 2025
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Online-Zugang:https://arxiv.org/abs/2512.22541
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author Guo, Tengtao
Zhou, Yuxuan
Feng, Jiahui
Zhao, Xinyu
Xia, Yan
author_facet Guo, Tengtao
Zhou, Yuxuan
Feng, Jiahui
Zhao, Xinyu
Xia, Yan
contents Contrary to the conventional view that noise is detrimental, we show that mixed noise can protect entanglement in a two-atom-cavity system. Specifically, the leakage of the cavity and the stochastic atom-cavity couplings are modeled as two types of noises. From the analytical derivation of the dynamical equations, the mechanism of the entanglement protection is revealed as the high-frequency(HF) noise in the atom-cavity couplings could suppress the decoherence caused by the cavity leakage, thus protect the entanglement. We investigate the entanglement protection induced by mixed noise constructed from diverse noise types, including the Ornstein-Uhlenbeck noise, flicker noise, and telegraph noise. Numerical simulations demonstrate that entanglement protection depends critically on the proportion of HF components in the power spectral density of the mixed noise. Our work establishes that enhanced HF components are essential for effective noise-assisted entanglement protection, offering key insights for noise engineering in practical open quantum systems.
format Preprint
id arxiv_https___arxiv_org_abs_2512_22541
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Entanglement protection induced by mixed noise
Guo, Tengtao
Zhou, Yuxuan
Feng, Jiahui
Zhao, Xinyu
Xia, Yan
Quantum Physics
Contrary to the conventional view that noise is detrimental, we show that mixed noise can protect entanglement in a two-atom-cavity system. Specifically, the leakage of the cavity and the stochastic atom-cavity couplings are modeled as two types of noises. From the analytical derivation of the dynamical equations, the mechanism of the entanglement protection is revealed as the high-frequency(HF) noise in the atom-cavity couplings could suppress the decoherence caused by the cavity leakage, thus protect the entanglement. We investigate the entanglement protection induced by mixed noise constructed from diverse noise types, including the Ornstein-Uhlenbeck noise, flicker noise, and telegraph noise. Numerical simulations demonstrate that entanglement protection depends critically on the proportion of HF components in the power spectral density of the mixed noise. Our work establishes that enhanced HF components are essential for effective noise-assisted entanglement protection, offering key insights for noise engineering in practical open quantum systems.
title Entanglement protection induced by mixed noise
topic Quantum Physics
url https://arxiv.org/abs/2512.22541