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Dissipative preparation of a tripartite singlet state in coupled arrays of cavities via quantum feedback control

机译:通过量子反馈控制在耦合腔耦合阵列中的三方单线状态的耗散制备

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摘要

We propose an experimentally feasible scheme for dissipative preparation of a tripartite entangled state with atoms separately trapped in an array of three coupled cavities. The combination of coherent driving fields and quantum-jump-based feedback control will drive the system into a nonequilibrium steady state, which has a nearly perfect overlap with the genuine three-atom singlet state. Different control strategies are investigated and the corresponding optimal parameters are confirmed. Moreover, the fidelity of the target state is insensitive to detection inefficiencies, and it exceeds 90% for a wide range of decoherence parameters as long as the single-atom cooperativity parameter C g(2)/(gamma kappa) > 350.
机译:我们提出了一种实验可行的方案,用于在三个耦合腔阵列中分别被捕获的原子的三方缠绕状态的实验可行的方案。 相干驾驶场和量子跳跃的反馈控制的组合将使系统驱动成非纤维稳态,具有与真正的三个原子单线状态几乎完美的重叠。 研究了不同的控制策略,并确认了相应的最佳参数。 此外,目标状态的保真度对检测效率低度不敏感,并且对于广泛的脱机参数而超过90%,只要单个原子协作参数C G(2)/(Gamma Kappa)> 350即可。

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