压缩热环境下高斯r -2量子相关的演化

IF 0.7 4区 物理与天体物理 Q3 COMPUTER SCIENCE, THEORY & METHODS International Journal of Quantum Information Pub Date : 2022-01-21 DOI:10.1142/s0219749921500362
Madalin Calamanciuc, A. Isar
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引用次数: 0

摘要

本文在开放量子系统理论的框架下,基于完全正动力学半群,研究了高斯Rényi-2关联的马尔可夫动力学——由两个玻色子模组成的系统中的量子纠缠、量子不和谐、互信息和经典关联,并与压缩热浴相互作用。我们证明了Rényi-2相关性的时间演化强烈依赖于所考虑系统的初始高斯压缩热态的参数和表征压缩热浴的参数。结果表明,当高斯Rényi-2纠缠在有限时间内被抑制时,由于与压缩热浴的相互作用,纠缠之外的关联——高斯Réanyi-2不和谐、经典关联和互信息——发生了类似冻结的行为,即它们在大次数的极限下仅渐近衰减。我们还说明了二分高斯相关的基本层次结构。
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Evolution of Gaussian Rényi-2 quantum correlations in a squeezed thermal environment
In this paper, we investigate, in the framework of the theory of open quantum systems, based on completely positive dynamical semigroups, the Markovian dynamics of Gaussian Rényi-2 correlations — quantum entanglement, quantum discord, mutual information and classical correlations in a system composed of two bosonic modes, interacting with a squeezed thermal bath. We show that the time evolution of the Rényi-2 correlations strongly depends on the parameters of the initial Gaussian squeezed thermal state of the considered system and on the parameters characterizing the squeezed thermal bath. It is shown that while Gaussian Rényi-2 entanglement is suppressed in a finite time, due to the interaction with the squeezed thermal bath, the correlations beyond entanglement — Gaussian Rényi-2 discord, classical correlations and mutual information undergo a freezing-like behavior, namely they decay only asymptotically, in the limit of large times. We also illustrate a fundamental hierarchy for bipartite Gaussian correlations.
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来源期刊
International Journal of Quantum Information
International Journal of Quantum Information 物理-计算机:理论方法
CiteScore
2.20
自引率
8.30%
发文量
36
审稿时长
10 months
期刊介绍: The International Journal of Quantum Information (IJQI) provides a forum for the interdisciplinary field of Quantum Information Science. In particular, we welcome contributions in these areas of experimental and theoretical research: Quantum Cryptography Quantum Computation Quantum Communication Fundamentals of Quantum Mechanics Authors are welcome to submit quality research and review papers as well as short correspondences in both theoretical and experimental areas. Submitted articles will be refereed prior to acceptance for publication in the Journal.
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