Enhancement of magnon–magnon entanglement in cavity magnomechanics with an optical parametric amplifier

IF 2.2 3区 物理与天体物理 Q1 PHYSICS, MATHEMATICAL Quantum Information Processing Pub Date : 2024-05-23 DOI:10.1007/s11128-024-04406-w
Hong-Jie Du, Xi-Yao Ma, Jin-Liang Guo
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Abstract

A scheme to enhance the entanglement between two magnon modes by an optical parametric amplifier (OPA) in a cavity magnomechanical system composed of a microwave cavity mode, two magnon modes and a mechanical mode is proposed. Owing to the magnon–phonon and cavity–magnon couplings, the enhancement of magnon–magnon entanglement can be realized in the presence of OPA with optimal phase by entanglement transfer. Especially, in virtue of the OPA, the strong entangled state for the two magnon modes can be prepared when there is no magnon–phonon interaction. Moreover, the improvement of tripartite entanglement between cavity–magnon–magnon with assistance of the OPA is also taken into account and analyzed. It is noted that the OPA increases the robustness of both magnon–magnon entanglement and cavity–magnon–magnon entanglement against the environmental temperature

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利用光参量放大器增强空腔磁力学中的磁子-磁子纠缠
本文提出了一种在由一个微波腔模、两个磁子模和一个机械模组成的腔体磁机械系统中通过光参量放大器(OPA)增强两个磁子模之间纠缠的方案。由于 "磁子-声子 "和 "空腔-磁子 "耦合,"磁子-磁子 "纠缠的增强可以在具有最佳相位的 OPA 存在下通过纠缠转移实现。特别是在 OPA 的作用下,当不存在镁-声子相互作用时,可以制备出两种镁-声子模式的强纠缠态。此外,在 OPA 的帮助下,空穴-磁子-磁子之间的三方纠缠也得到了改善和分析。结果表明,OPA 提高了磁子-磁子纠缠和空穴-磁子-磁子纠缠对环境温度的稳健性。
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来源期刊
Quantum Information Processing
Quantum Information Processing 物理-物理:数学物理
CiteScore
4.10
自引率
20.00%
发文量
337
审稿时长
4.5 months
期刊介绍: Quantum Information Processing is a high-impact, international journal publishing cutting-edge experimental and theoretical research in all areas of Quantum Information Science. Topics of interest include quantum cryptography and communications, entanglement and discord, quantum algorithms, quantum error correction and fault tolerance, quantum computer science, quantum imaging and sensing, and experimental platforms for quantum information. Quantum Information Processing supports and inspires research by providing a comprehensive peer review process, and broadcasting high quality results in a range of formats. These include original papers, letters, broadly focused perspectives, comprehensive review articles, book reviews, and special topical issues. The journal is particularly interested in papers detailing and demonstrating quantum information protocols for cryptography, communications, computation, and sensing.
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