论文标题

用机械振荡器作为“冷储液”生成轻波 - 斑点和马格农纠缠

Generating lightwave-photon-and-magnon entanglement with a mechanical oscillator as a "cold reservoir"

论文作者

Yang, Zhi-Bo, Liu, Jin-Song, Jin, Hua, Zhu, Qing-Hao, Liu, Hong-Yu, Zhu, Ai-Dong, Yang, Rong-Can

论文摘要

我们提出了一个方案,通过绝热地消除辅助微波炉,并有效地冷却DELACALIALIZED BOGOLIUBOV模式,从而在混合光子马格尼族系统中实施稳定的光波和魔力纠缠。该系统由镁,光波和微波光子以及声子组成。镁在宏观的铁磁铁中的大量自旋的集体运动所体现。为了实现磁子和灯泡光子之间的纠缠相互作用,我们在与机械谐振器相关的红色和蓝色边带上驱动光腔和磁棒。特别是,优化效应耦合的相对比率,而不是简单地增加其幅度,这对于实现强纠缠而言至关重要。与典型的耗散纠缠方案不同,无法通过通过Linblad Master方程处理纠缠储层的影响来描述我们的结果。

We present a scheme to implement a steady lightwave-photon-and-magnon entanglement in a hybrid photon-magnon system by adiabatically eliminating the auxiliary microwave cavity and effectively laser cooling a delocalized Bogoliubov mode. The system consists of magnons, lightwave and microwave photons, and phonons. The magnons are embodied by a collective motion of a large number of spins in a macroscopic ferrimagnet. To achieve an entangling interaction between magnons and lightwave photons, we drive optical cavity and magnon at the red and blue sideband associated with the mechanical resonator. In particular, optimizing the relative ratio of effect couplings, rather than simply increasing their magnitudes, is essential for achieving strong entanglement. Unlike typical dissipative entanglement schemes, our results cannot be described by treating the effects of the entangling reservoir via a Linblad master equation.

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