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Highly efficient hyperentanglement concentration with two steps assisted by quantum swap gates

机译:量子交换门辅助的两步高效超纠缠浓缩

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摘要

We present a two-step hyperentanglement concentration protocol (hyper-ECP) for polarization-spatial hyperentangled Bell states based on the high-capacity character of hyperentanglement resorting to the swap gates, which is used to obtain maximally hyperentangled states from partially hyperentangled pure states in long-distance quantum communication. The swap gate, which is constructed with the giant optical circular birefringence (GOCB) of a diamond nitrogen-vacancy (NV) center embedded in a photonic crystal cavity, can be used to transfer the information in one degree of freedom (DOF) between photon systems. By transferring the useful information between hyperentangled photon pairs, more photon pairs in maximally hyperentangled state can be obtained in our hyper-ECP, and the success probability of the hyper-ECP is greatly improved. Moreover, we show that the high-fidelity quantum gate operations can be achieved by mapping the infidelities to heralded losses even in the weak coupling regime.
机译:基于超交换的高容量特征,通过交换门,我们提出了极化空间超纠缠贝尔状态的两步超纠缠集中协议(hyper-ECP),用于从部分超纠缠的纯态中获得最大超纠缠态长距离量子通信。交换门由嵌入在光子晶体腔中的金刚石氮空位(NV)中心的巨型光学圆双折射(GOCB)构成,可用于在光子之间以一个自由度(DOF)传输信息系统。通过在超纠缠光子对之间传递有用信息,可以在我们的超ECP中获得更多处于最大超纠缠态的光子对,大大提高了超ECP的成功概率。此外,我们表明,即使在弱耦合状态下,也可以通过将不保真度映射到预示的损失来实现高保真量子门操作。

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