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双模光机械系统中的增强量子非线性。

Enhanced quantum nonlinearities in a two-mode optomechanical system.

机构信息

Institute for Theoretical Physics, Universität Erlangen-Nürnberg, Erlangen, Germany.

出版信息

Phys Rev Lett. 2012 Aug 10;109(6):063601. doi: 10.1103/PhysRevLett.109.063601. Epub 2012 Aug 7.

Abstract

In cavity optomechanics, nanomechanical motion couples to a localized optical mode. The regime of single-photon strong coupling is reached when the optical shift induced by a single phonon becomes comparable to the cavity linewidth. We consider a setup in this regime comprising two optical modes and one mechanical mode. For mechanical frequencies nearly resonant to the optical level splitting, we find the photon-phonon and the photon-photon interactions to be significantly enhanced. In addition to dispersive phonon detection in a novel regime, this offers the prospect of optomechanical photon measurement. We study these quantum nondemolition detection processes using both analytical and numerical approaches.

摘要

在腔光机械学中,纳米机械运动与局域光模式耦合。当单个声子引起的光学位移与腔线宽相当时,就达到了单光子强耦合的模式。我们考虑了一个包含两个光学模式和一个机械模式的装置。对于机械频率几乎与光学能级分裂共振的情况,我们发现光子-声子和光子-光子相互作用显著增强。除了在新的模式下进行色散声子探测外,这还提供了机械光子测量的前景。我们使用分析和数值方法研究了这些量子非破坏检测过程。

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