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通过耗散工程实现里德堡原子的稳态基尔-拉弗拉梅-米尔本态

Engineering steady Knill-Laflamme-Milburn state of Rydberg atoms by dissipation.

作者信息

Li Dong-Xiao, Shao Xiao-Qiang, Wu Jin-Hui, Yi X X, Zheng Tai-Yu

出版信息

Opt Express. 2018 Feb 5;26(3):2292-2302. doi: 10.1364/OE.26.002292.

Abstract

The Knill-Laflamme-Milburn (KLM) states have been proved to be a useful resource for quantum information processing [Nature409, 46 (2001)]. For atomic KLM states, several schemes have been put forward based on the time-dependent unitary dynamics, but the dissipative generation of these states has not been reported. This work discusses the possibility for creating different forms of bipartite KLM states in neutral atom system, where the spontaneous emission of excited Rydberg states, combined with the Rydberg antiblockade mechanism, is actively exploited to engineer a steady KLM state from an arbitrary initial state. The numerical simulation of the master equation signifies that a fidelity above 99% is available with the current experimental parameters.

摘要

已证明基尔-拉弗拉梅-米尔本(KLM)态是量子信息处理的有用资源[《自然》409, 46 (2001)]。对于原子KLM态,已经基于含时幺正动力学提出了几种方案,但尚未报道这些态的耗散产生。这项工作讨论了在中性原子系统中创建不同形式的两体KLM态的可能性,其中积极利用激发里德堡态的自发辐射与里德堡反阻塞机制,从任意初始态构建稳定的KLM态。主方程的数值模拟表明,在当前实验参数下保真度可达99%以上。

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