论文标题

单晶钻石膜的扫描腔显微镜

Scanning cavity microscopy of a single-crystal diamond membrane

论文作者

Körber, Jonathan, Pallmann, Maximilian, Heupel, Julia, Stöhr, Rainer, Vasilenko, Evgenij, Hümmer, Thomas, Kohler, Larissa, Popov, Cyril, Hunger, David

论文摘要

固态的旋转色中心是实现量子网络和分布式量子计算的有希望的候选者。剩下的关键挑战是它们与光子的有效且可靠的接口。将最小加工的膜融入开放式小腔中代表了一种有希望的旋转旋转光子界面的途径:它可以显着增强发射和有效的光子收集,最大程度地减少对量子的影响,使对量子发射极的影响减少,并允许全空间和频谱调节能力,可用于可控制的型号以及可控制的型号的键入型号,并具有适用于选择的型号。在这里,我们通过扫描腔显微镜研究了具有整合的单晶钻石膜的高素质纤维Fabry-Pérot微腔的性能。我们观察到钻石空气界面对空腔模式结构的影响:腔体细致和模式结构与钻石厚度和表面形貌,钻石样条件下的显着横向模式混合以及模式 - 依赖性的偏置模式的巨大相关性。我们的结果揭示了钻石表面对可实现的purcell增强功能的影响,这有助于阐明通向优化的自旋光子接口的途径。

Spin-bearing color centers in the solid state are promising candidates for the realization of quantum networks and distributed quantum computing. A remaining key challenge is their efficient and reliable interfacing to photons. Incorporating minimally processed membranes into open-access microcavities represents a promising route for Purcellenhanced spin-photon interfaces: it enables significant emission enhancement and efficient photon collection, minimizes deteriorating influence on the quantum emitter, and allows for full spatial and spectral tunability, key for controllably addressing suitable emitters with desired optical and spin properties. Here, we study the properties of a high-finesse fiber Fabry-Pérot microcavity with integrated single-crystal diamond membranes by scanning cavity microscopy. We observe spatially resolved the effects of the diamond-air interface on the cavity mode structure: a strong correlation of the cavity finesse and mode structure with the diamond thickness and surface topography, significant transverse-mode mixing under diamond-like conditions, and mode-character-dependent polarization-mode splitting. Our results reveal the influence of the diamond surface on the achievable Purcell enhancement, which helps to clarify the route towards optimized spin-photon interfaces.

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