Hybrid optomechanics for Quantum Technologies

B. Rogers, N. Gullo, G. Chiara, G. Palma, M. Paternostro
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引用次数: 44

Abstract

Abstract We review the physics of hybrid optomechanical systems consisting of a mechanical oscillator interacting with both a radiation mode and an additional matterlike system. We concentrate on the cases embodied by either a single or a multi-atom system (a Bose-Einstein condensate, in particular) and discuss a wide range of physical effects, from passive mechanical cooling to the set-up of multipartite entanglement, from optomechanical nonlocality to the achievement of non-classical states of a single mechanical mode. The reviewed material showcases the viability of hybridised cavity optomechanical systems as basic building blocks for quantum communication networks and quantum state-engineering devices, possibly empowered by the use of quantum and optimal control techniques. The results that we discuss are instrumental to the promotion of hybrid optomechanical devices as promising experimental platforms for the study of nonclassicality at the genuine mesoscopic level.
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量子技术的混合光力学
摘要本文综述了由机械振子与辐射模和附加类物质系统相互作用组成的混合光力学系统的物理性质。我们专注于单原子或多原子系统(特别是玻色-爱因斯坦凝聚)所体现的情况,并讨论了广泛的物理效应,从被动机械冷却到多部纠缠的建立,从光力学非定域性到单一机械模式的非经典状态的实现。回顾的材料展示了混合腔光力学系统作为量子通信网络和量子态工程设备的基本构建模块的可行性,可能通过使用量子和最优控制技术来增强。我们讨论的结果有助于促进混合光力学装置作为在真正介观水平上研究非经典性的有前途的实验平台。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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