论文标题

光学机械schrödinger猫在腔bose-内施坦冷凝水中

Optomechanical Schrödinger cat states in a cavity Bose-Einstein condensate

论文作者

Li, Baijun, Qin, Wei, Jiao, Ya-Feng, Zhai, Cui-Lu, Xu, Xun-Wei, Kuang, Le-Man, Jing, Hui

论文摘要

SchrödingerCat状态由宏观上不同状态的叠加组成,为量子信息处理中的大量新兴量子技术提供了关键资源。在这里,我们提出了如何通过基于Bose-Einstein冷凝水的腔体光学系统的独特性能来生成和操纵具有可区分叠加成分的机械和光学schrödinger猫状态。具体而言,我们表明,与其固态对应物相比,可以实现机械schrödinger猫状态大小的几乎3 $的数量级增强,这表征了其两个超硫磺相干状态组件之间的重叠率要小得多。通过利用这种生成的猫状态,我们进一步展示了如何设计机械模式的正交挤压。此外,我们还提供了一种有效的方法来在我们的建议方案中创建多组分光学schrödinger猫状态。我们的工作为实现大规模物体的非经典状态开辟了一种新方法,从而促进了耐断层量子处理器和传感器的发展。

Schrödinger cat states, consisting of superpositions of macroscopically distinct states, provide key resources for a large number of emerging quantum technologies in quantum information processing. Here we propose how to generate and manipulate mechanical and optical Schrödinger cat states with distinguishable superposition components by exploiting the unique properties of cavity optomechanical systems based on Bose-Einstein condensate. Specifically, we show that in comparison with its solid-state counterparts, almost a $3$ order of magnitude enhancement in the size of the mechanical Schrödinger cat state could be achieved, characterizing a much smaller overlap between its two superposed coherent-state components. By exploiting this generated cat state, we further show how to engineer the quadrature squeezing of the mechanical mode. Besides, we also provide an efficient method to create multicomponent optical Schrödinger cat states in our proposed scheme. Our work opens up a new way to achieve nonclassical states of massive objects, facilitating the development of fault-tolerant quantum processors and sensors.

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