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“量身定做”单光子波包:在量子网络中控制光子/自旋量子界面

Customizing single photon wavepackets: control of the spin/photon interface in a quantum network

  • 摘要: 文章简要地介绍了如何在量子网络中控制量子界面动力学以实现静态量子比特和动态量子比特的相互转换. 具体言之,该界面由半导体量子点、固体光学微腔以及光学波导管构成, 静态及动态比特分别为量子点中的电子自旋和波导管中的单光子波包所携带. 界面动力学的控制则是基于对量子点、微腔和波导管耦合系统的量子电动力学的严格求解. 据此可实现网络中两个远距离节点间的量子态传输、交换以及确定性的建立量子纠缠等量子操作. 上述量子界面亦可用于任意指定波形的单光子源或者单光子探测装置.

     

    Abstract: We propose a dot-cavity-waveguide coupled system as a quantum interface for stationary spin qubits and flying photon qubits. The exact solution to the dynamics of the interface is given which allows the generation or reception of an arbitrarily designated wave-packet of a single photon. Such control can be used for realizing operations such as quantum state transfer, entanglement swapping or deterministic entanglement creation in a quantum network. The interface can also be used as a deterministic source and an efficient detector of a single photon wavepacket with an arbitrarily specified shape and average photon number.

     

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