论文标题

反对光学反向散射的相对的非对称光机电纠缠

Phase-controlled asymmetric optomechanical entanglement against optical backscattering

论文作者

Liu, Jing-Xue, Jiao, Ya-Feng, Li, Ying, Xu, Xun-Wei, He, Qiong-Yi, Jing, Hui

论文摘要

量子纠缠在理解量子物理学的基本方面和实现用于实际应用的各种量子设备方面起着关键作用。在这里,我们建议如何通过调整驱动激光器的相位差来实现光学窃窃私语模式谐振器中光机电纠缠的连贯转换。我们发现,与传统的对称设备相比,相比之下,可以很好地调节光学机械纠缠和相关​​的两型量子挤压,以高度不对称的方式对其进行很好的调整,从而提供有效的方法来保护和增强量子纠缠免受光学反向散射的影响。我们的发现为改善实践噪声环境中各种量子设备的性能提供了新的启示,这在诸如降低噪声的量子处理和反向散射 - 免疫量子学等广泛应用中至关重要。

Quantum entanglement plays a key role in both understanding the fundamental aspects of quantum physics and realizing various quantum devices for practical applications. Here we propose how to achieve coherent switch of optomechanical entanglement in an optical whispering-gallery-mode resonator, by tuning the phase difference of the driving lasers. We find that the optomechanical entanglement and the associated two-mode quantum squeezing can be well tuned in a highly asymmetric way, providing an efficient way to protect and enhance quantum entanglement against optical backscattering, in comparison with conventional symmetric devices. Our findings shed a new light on improving the performance of various quantum devices in practical noisy environment, which is crucial in such a wide range of applications as noise-tolerant quantum processing and the backscattering-immune quantum metrology.

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