量子纠缠
物理
量子计量学
光力学
光子
光子纠缠
量子力学
量子
量子传感器
腔量子电动力学
量子光学
量子技术
量子网络
开放量子系统
作者
Lei Sun,Yi‐Bing Qian,Deng-Gao Lai,Shi‐Tong Huang,Zhenyu Zhang,Bang‐Pin Hou,Lei Tang
出处
期刊:Optics Express
[The Optical Society]
日期:2024-09-06
卷期号:32 (20): 35806-35806
被引量:2
摘要
Quantum entanglement is pivotal in modern quantum technologies, spanning applications from quantum networks to quantum metrology. Controllable quantum entanglement in cavity optomechanical systems has been an enduring pursuit. We propose a unique method for flexible manipulation and switching of optomechanical entanglement in a squeezed-cavity-assisted optomechanical system consisting of a χ (2) -nonlinear optical cavity and an optomechanical cavity. Squeezing the nonlinear optical cavity through parametric pumping allows effective control of light-light and light-vibration interactions within the system. This capability of the squeezed system plays a key role in manipulating quantum entanglement. We find that quantum entanglement between the unsqueezed cavity mode and the mechanical mode can be effectively regulated by adjusting the pump laser parameters. Furthermore, by turning the phase of the pump, we can achieve highly flexible quantum switching between entanglement and separability. Additionally, we demonstrate increased entanglement between the squeezed cavity mode and the mechanical mode when completely suppressing the pump-induced optical input noise. Our findings pave the way not only towards the manipulation and protection of fragile quantum entanglement but also to achieve photon-phonon quantum control by exploiting quantum squeezing.
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