基于光电系统的连续变量成对纠缠

Qizhi Cai, Jinkun Liao, Qiang Zhou
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引用次数: 0

摘要

我们展示了如何在混合光电系统中产生微波模式之间的平稳连续变量成对纠缠,该系统由单个法布里-帕姆罗特腔、具有运动元件作为机械谐振器的平行板电容器和几对微波腔组成。光模和机械谐振腔通过辐射压力耦合;同时,对微波模式和机械谐振腔进行了电容耦合。在实验可达的参数范围内,我们展示了不同关键参数对双纠缠的影响,并发现它对温度也具有鲁棒性。我们的模型和结果有望为越来越大规模的量子网络、具有多个本地用户的量子互联网和多端口微波量子照明雷达提供新的视角。
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Continuous-Variable Pairwise Entanglement Based on Optoelectromechanical System
We show how to generate stationary continuous-variable pairwise entanglement between microwave modes in a hybrid optoelectromechanical system, which consists of a single Fabry–Pérot cavity, a parallel-plate capacitor with a moving element as the mechanical resonator, and several pairs of microwave cavities. The optical mode and mechanical resonator are coupled via radiation pressure; meanwhile, several pairs of the microwave mode and mechanical resonator are capacitively coupled. Under an experimentally reachable parameter regime, we show the influence of different key parameters on pairwise entanglement and find that it is also robust against temperature. Our model and results are expected to provide a new perspective on quantum networks with increasingly large scales, quantum internet with multiple local users, and multiport microwave quantum illumination radar.
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