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腔光力学中的宏观量子叠加

Macroscopic Quantum Superposition in Cavity Optomechanics.

作者信息

Liao Jie-Qiao, Tian Lin

机构信息

School of Natural Sciences, University of California, Merced, California 95343, USA.

出版信息

Phys Rev Lett. 2016 Apr 22;116(16):163602. doi: 10.1103/PhysRevLett.116.163602. Epub 2016 Apr 19.

Abstract

Quantum superposition in mechanical systems is not only key evidence for macroscopic quantum coherence, but can also be utilized in modern quantum technology. Here we propose an efficient approach for creating macroscopically distinct mechanical superposition states in a two-mode optomechanical system. Photon hopping between the two cavity modes is modulated sinusoidally. The modulated photon tunneling enables an ultrastrong radiation-pressure force acting on the mechanical resonator, and hence significantly increases the mechanical displacement induced by a single photon. We study systematically the generation of the Yurke-Stoler-like states in the presence of system dissipations. We also discuss the experimental implementation of this scheme.

摘要

机械系统中的量子叠加不仅是宏观量子相干的关键证据,还可应用于现代量子技术。在此,我们提出一种在双模光机械系统中创建宏观上不同的机械叠加态的有效方法。两个腔模之间的光子跳跃以正弦方式调制。调制后的光子隧穿使得作用在机械谐振器上的辐射压力超强,从而显著增加单个光子引起的机械位移。我们系统地研究了在存在系统耗散的情况下类尤尔克 - 斯托勒态的产生。我们还讨论了该方案的实验实现。

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