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Robust entanglement between a movable mirror and atomic ensemble and entanglement transfer in coupled optomechanical system

机译:耦合光机械系统中可移动反射镜与原子团簇之间的鲁棒纠缠和纠缠转移

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摘要

We propose a scheme for the creation of robust entanglement between a movable mirror and atomic ensemble at the macroscopic level in coupled optomechanical system. We numerically simulate the degree of entanglement of the bipartite macroscopic entanglement and show that it depends on the coupling strength between the cavities and is robust with respect to the certain environment temperature. Inspiringly and surprisingly, according to the reported relation between the mechanical damping rate and the mechanical frequency of the movable mirror, the numerical simulation result shows that such bipartite macroscopic entanglement persists for environment temperature up to 170 K, which breaks the liquid nitrogen cooling and liquid helium cooling and largely lowers down the experiment cost. We also investigate the entanglement transfer based on this coupled system. The scheme can be used for the realization of quantum memories for continuous variable quantum information processing and quantum-limited displacement measurements.
机译:我们提出了一种在耦合光机械系统的宏观层面上创建可移动反射镜与原子整体之间鲁棒缠结的方案。我们数值模拟了二元宏观缠结的缠结程度,并表明它取决于型腔之间的耦合强度,并且在一定的环境温度下具有较强的鲁棒性。令人鼓舞和令人惊讶的是,根据报道的可移动反射镜的机械阻尼率和机械频率之间的关系,数值模拟结果表明,这种二元宏观缠结在环境温度高达170 K时仍然存在,这打破了液氮冷却和液体氦气冷却,大大降低了实验成本。我们还研究了基于该耦合系统的纠缠转移。该方案可用于实现连续可变量子信息处理和量子极限位移测量的量子存储器。

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