论文标题

逆设计的光子提取器用于光学上可寻址的缺陷Qubit

Inverse-designed photon extractors for optically addressable defect qubits

论文作者

Chakravarthi, Srivatsa, Chao, Pengning, Pederson, Christian, Molesky, Sean, Ivanov, Andrew, Hestroffer, Karine, Hatami, Fariba, Rodriguez, Alejandro W., Fu, Kai-Mei C.

论文摘要

具有自旋光子界面的固态缺陷量子系统对量子信息和计量应用显示出巨大的希望。但是,光子收集效率对高折射率宿主材料中的缺陷量子位提出了一个主要挑战。光子设备的反设计优化可以实现前所未有的灵活性,以定制自旋光子界面的关键参数,包括光谱响应,光子极化和收集模式。此外,设计过程可以包含其他约束,例如制造公差和材料处理限制。在这里,我们在钻石逆设计平面介电结构上设计并演示了一个紧凑型混合磷化物,并与植入和退火形成的单个近地表氮vac剂中心结合。我们观察到在理论极限附近的设备操作,并测量光子提取效率的14倍宽带增强。我们期望这种反设计的设备能够实现单光子发射器的可扩展阵列,新量子发射器的快速表征,感应和有效的预示纠缠方案。

Solid-state defect qubit systems with spin-photon interfaces show great promise for quantum information and metrology applications. Photon collection efficiency, however, presents a major challenge for defect qubits in high refractive index host materials. Inverse-design optimization of photonic devices enables unprecedented flexibility in tailoring critical parameters of a spin-photon interface including spectral response, photon polarization and collection mode. Further, the design process can incorporate additional constraints, such as fabrication tolerance and material processing limitations. Here we design and demonstrate a compact hybrid gallium phosphide on diamond inverse-design planar dielectric structure coupled to single near-surface nitrogen-vacancy centers formed by implantation and annealing. We observe device operation near the theoretical limit and measure up to a 14-fold broadband enhancement in photon extraction efficiency. We expect that such inverse-designed devices will enable realization of scalable arrays of single-photon emitters, rapid characterization of new quantum emitters, sensing and efficient heralded entanglement schemes.

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