Opt Express. 2023 Feb 27;31(5):7994-8004. doi: 10.1364/OE.478963.
We propose a scheme to realize robust optical entanglement in cavity optomagnonics, where two optical whispering gallery modes (WGMs) couple to a magnon mode in a yttrium iron garnet (YIG) sphere. The beam-splitter-like and two-mode squeezing magnon-photon interactions can be realized simultaneously when the two optical WGMs are driven by external fields. Entanglement between the two optical modes is then generated via their coupling with magnons. By exploiting the destructive quantum interference between the bright modes of the interface, the effects of initial thermal occupations of magnons can be eliminated. Moreover, the excitation of the Bogoliubov dark mode is capable of protecting the optical entanglement from thermal heating effects. Therefore, the generated optical entanglement is robust against thermal noise and the requirement of cooling the magnon mode is relaxed. Our scheme may find applications in the study of magnon-based quantum information processing.
我们提出了一种在腔光磁振子学中实现稳健光纠缠的方案,其中两个光学回音壁模式(WGM)与钇铁石榴石(YIG)球中的磁振子模式耦合。当两个光学 WGM 被外部场驱动时,可以同时实现分束器样和双模压缩磁光光子相互作用。然后,通过它们与磁子的耦合产生两个光学模式之间的纠缠。通过利用界面亮模之间的破坏性量子干涉,可以消除磁振子初始热占据的影响。此外,Bogoliubov 暗模的激发能够保护光纠缠免受热加热效应的影响。因此,产生的光纠缠对热噪声具有鲁棒性,并且放宽了冷却磁振子模式的要求。我们的方案可能在基于磁振子的量子信息处理研究中找到应用。