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Heralded quantum repeater for a quantum communication network based on quantum dots embedded in optical microcavities

机译:基于光学微腔中的量子点的量子通信网络的预示量子中继器

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摘要

We propose a heralded quantum repeater protocol based on the general interface between the circularly polarized photon and the quantum dot embedded in a double-sided optical microcavity. Our effective time-bin encoding on photons results in the deterministic faithful entanglement distribution with one optical fiber for the transmission of each photon in our protocol, not two or more. Our efficient parity-check detector implemented with only one input-output process of a single photon as a result of cavity quantum electrodynamics makes the entanglement channel extension and entanglement purification in quantum repeater far more efficient than others, and it has the potential application in fault-tolerant quantum computation as well. Meanwhile, the deviation from a collective-noise channel leads to some phase-flip errors on the nonlocal electron spins shared by the parties and these errors can be depressed by our simplified entanglement purification process. Finally, we discuss the performance of our proposal, concluding that it is feasible with current technology.
机译:我们提出了一种基于圆极化光子和嵌入在双面光学微腔中的圆偏振光子和量子点之间的一般界面的预示着量子中继器协议。我们在光子上编码的有效时间箱导致确定性忠实的纠缠分布,其中一个光纤用于在我们的协议中传输每个光子,而不是两个或更多。我们的高效奇偶校验检测器仅通过腔量子电动动力学的单个光子的一个输入输出过程实现,使得Quantum中继器的缠结通道延伸和缠绕净化远比其他的效率更高,并且它具有潜在的故障应用 - 也是衡量量子计算。同时,与集体噪声信道的偏差导致各方共享的非识别电子旋转上的一些相位翻转误差,并且通过我们的简化纠缠净化过程可以按下这些误差。最后,我们讨论了我们提案的表现,得出结论,它与当前技术是可行的。

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