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An effective shortcut to adiabatic passage for fast quantum state transfer in a cavity quantum electronic dynamics system

机译:绝热通道的有效捷径,用于腔量子电子动力学系统中的快速量子态转移

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摘要

We propose an alternative scheme for constructing a shortcut to implement the quantum state transfer between two three-level atoms founded on the invariant-based inverse engineering in a cavity quantum electronic dynamics (QED) system. Quantum information can be quickly transferred between atoms by taking advantage of the cavity field as a medium. Through our design of the time-dependent laser pulse and atom-cavity coupling, we send atoms through the cavity within a short time interval, which involves the two processes of the invariant dynamics between each atom and the cavity field simultaneously. We redesign a reasonable Gaussian-type wave form in the atom-cavity coupling for a realistic experimental operation. Numerical simulation shows that the target state can be quickly populated with a high fidelity which is robust against both the parameter fluctuations and the dissipation.
机译:我们提出了一种替代方案,用于构造在基于腔量子电子动力学(QED)的基于不变性的逆工程基础上实现两个三能级原子之间的量子态转移的捷径。利用腔场作为介质,可以在原子之间快速传输量子信息。通过设计与时间有关的激光脉冲和原子-腔耦合,我们在短时间内将原子发送通过腔,这涉及到每个原子与腔场之间同时具有不变动力学的两个过程。我们在原子-腔耦合中重新设计了合理的高斯型波形,以便进行实际的实验操作。数值模拟表明目标状态可以以高保真度快速填充,这对于参数波动和耗散都具有鲁棒性。

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