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通过李雅普诺夫控制将多个远距离原子驱动到高保真稳态纠缠。

Driving many distant atoms into high-fidelity steady state entanglement via Lyapunov control.

作者信息

Li Chuang, Song Jie, Xia Yan, Ding Weiqiang

出版信息

Opt Express. 2018 Jan 22;26(2):951-962. doi: 10.1364/OE.26.000951.

Abstract

Based on Lyapunov control theory in closed and open systems, we propose a scheme to generate W state of many distant atoms in the cavity-fiber-cavity system. In the closed system, the W state is generated successfully even when the coupling strength between the cavity and fiber is extremely weak. In the presence of atomic spontaneous emission or cavity and fiber decay, the photon-measurement and quantum feedback approaches are proposed to improve the fidelity, which enable efficient generation of high-fidelity W state in the case of large dissipation. Furthermore, the time-optimal Lyapunov control is investigated to shorten the evolution time and improve the fidelity in open systems.

摘要

基于封闭和开放系统中的李雅普诺夫控制理论,我们提出了一种在腔-光纤-腔系统中生成多个远距离原子的W态的方案。在封闭系统中,即使腔与光纤之间的耦合强度极其微弱,也能成功生成W态。在存在原子自发辐射或腔与光纤衰减的情况下,提出了光子测量和量子反馈方法来提高保真度,这使得在大耗散情况下能够高效生成高保真W态。此外,还研究了时间最优李雅普诺夫控制,以缩短开放系统中的演化时间并提高保真度。

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