论文标题
针对反向散射损失的非肾脏光学机电纠缠
Nonreciprocal Optomechanical Entanglement against Backscattering Losses
论文作者
论文摘要
我们提出了如何实现光和运动的非级别量子纠缠,并揭示其对随机损失的符合性鲁棒性。我们发现,通过通过SAGNAC效应将旋转谐振器的反传播灯分开,可以将光子和声子纠缠在选择的方向上,但在另一个方向上完全不相关。这使得即使没有任何经典的非经典性,也可以实现量子非股发,也可以实现对实践设备中反向散射损失的显着纠缠复兴。我们的工作提供了一种方法,通过利用多种非互联网设备来保护和设计量子资源,用于构建耐噪声量子处理器,实现手性网络和背部 - 免疫量子传感器。
We propose how to achieve nonreciprocal quantum entanglement of light and motion and reveal its counterintuitive robustness against random losses. We find that by splitting the counterpropagating lights of a spinning resonator via the Sagnac effect, photons and phonons can be entangled strongly in a chosen direction but fully uncorrelated in the other. This makes it possible both to realize quantum nonreciprocity even in the absence of any classical nonreciprocity and also to achieve significant entanglement revival against backscattering losses in practical devices. Our work provides a way to protect and engineer quantum resources by utilizing diverse nonreciprocal devices, for building noise-tolerant quantum processors, realizing chiral networks, and backaction-immune quantum sensors.