首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Heralded universal quantum computing on electron spins in diamond nitrogen-vacancy centers assisted by low-Q microtoroidal resonators
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Heralded universal quantum computing on electron spins in diamond nitrogen-vacancy centers assisted by low-Q microtoroidal resonators

机译:在低Q微型谐振器辅助的金刚石氮空位中心上的电子旋转的预示通用量子计算

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摘要

Heralded universal quantum gates can largely decrease the quantum resource consumed in the integration of a multiqubit quantum circuit. Here, we present a scheme for heralded universal quantum computing, including the construction of the CNOT gate, Fredkin gate, and Toffoli gate on the electron spins in diamond nitrogen-vacancy (NV) centers assisted by low- Q microtoroidal resonators. These quantum gates can achieve unity fidelity, as the infidelity induced by the imperfect input-output process is transferred into photon loss. The dicks on different single-photon detectors can either herald the success of the quantum gates or instruct an immediate recycling procedure, even without reinitializing the NV centers. Besides the heralding, this scheme is also more realistic, observing that the non-monochromatic auxiliary photon and the inhomogeneous NV centers have no adverse impact on fidelity. The high fidelity and efficiency with experimental parameters show that the scheme is feasible with current technology. (C) 2020 Optical Society of America
机译:预告的通用量子门可以大大减少多量子比特量子电路集成中所消耗的量子资源。在这里,我们提出了一个预示着通用量子计算的方案,包括在低Q微环形谐振器的辅助下,在金刚石氮空位(NV)中心的电子自旋上构建CNOT门、Fredkin门和Toffoli门。这些量子门可以实现单位保真度,因为不完美的输入输出过程导致的不忠会转化为光子损失。不同单光子探测器上的dicks既可以预示量子门的成功,也可以指示立即回收程序,即使不重新初始化NV中心。除了预告,该方案也更现实,观察到非单色辅助光子和非均匀NV中心对保真度没有不利影响。实验参数的高保真度和效率表明,该方案在现有技术条件下是可行的。(C) 2020美国光学学会

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    Beijing Normal Univ Dept Phys Appl Opt Beijing Area Major Lab Beijing 100875 Peoples R China;

    Beijing Normal Univ Dept Phys Appl Opt Beijing Area Major Lab Beijing 100875 Peoples R China;

    Beijing Normal Univ Dept Phys Appl Opt Beijing Area Major Lab Beijing 100875 Peoples R China;

    Beijing Normal Univ Dept Phys Appl Opt Beijing Area Major Lab Beijing 100875 Peoples R China;

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  • 正文语种 eng
  • 中图分类 光学;
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