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Efficient Extraction of Light from a Nitrogen-Vacancy Center in a Diamond Parabolic Reflector

机译:在金刚石抛物线反射器中的氮空位中心有效提取光的光

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摘要

Quantum emitters in solids are being developed for a range of quantum technologies, including quantum networks, computing, and sensing. However, a remaining challenge is the poor photon collection due to the high refractive index of most host materials. Here we overcome this limitation by introducing monolithic parabolic reflectors as an efficient geometry for broadband photon extraction from quantum emitter and experimentally demonstrate this device for the nitrogen-vacancy (NV) center in diamond. Simulations indicate a photon collection efficiency exceeding 75% across the visible spectrum and experimental devices, fabricated using a high-throughput gray scale lithography process, demonstrating a photon extraction efficiency of (41 +/- 5)%. This device enables a raw experimental detection efficiency of (12 +/- 1)% with fluorescence detection rates as high as (4.114 +/- 0.003) X 10(6) counts per second (cps) from a single NV center. Enabled by our deterministic emitter localization and fabrication process, we find a high number of exceptional devices with an average count rate of (3.1 +/- 0.9) x 10(6) cps.
机译:正在为一系列量子技术开发固体的量子发射器,包括量子网络,计算和感应。然而,由于大多数主体材料的高折射率,剩余的挑战是较差的光子收集。在这里,我们通过将单片抛物线反射器引入来自量子发射器的宽带光子提取的有效几何形状的单片抛物线反射器来克服了这种限制,并通过实验证明了钻石中的氮空位(NV)中心的该装置。模拟表明,使用高通量灰度光刻工艺制造的可见光谱和实验装置上的光子收集效率超过75%,展示(41 +/- 5)%的光子提取效率。该装置使原始实验检测效率为(12 +/-1)%,荧光检测率高达(4.114 +/- 0.003)×10(6)每秒来自单个NV中心计数(CPS)。通过我们的确定性发射器本地化和制造过程启用,我们发现了大量具有(3.1 +/- 0.9)x 10(6)CPS的平均计数率的卓越设备。

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