Effect of photonic density of states on spin-flip induced fluorescence contrast in diamond nitrogen-vacancy center ensembles (Presentation Recording)

M. Shalaginov, S. Bogdanov, Jing Liu, A. Lagutchev, A. Kildishev, D. Peroulis, J. Irudayaraj, A. Boltasseva, V. Shalaev
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Abstract

Diamond based nitrogen-vacancy (NV) centers are promising solid state defects for applications in quantum information technologies. On the one hand, there is a growing interest in enhancing their single-photon emission by coupling them to plasmonic structures. On the other hand, the dependence of emission intensity on the electron spin state enables room temperature quantum information readout. We study the fluorescence contrast resulting from the spin resonance in the conditions of an increased photonic density of states. Fluorescence observations from NV center ensembles in diamond nanocrystals coupled to structures supporting plasmonic modes experimentally confirm the analytical results.
态光子密度对金刚石氮-空位中心系综自旋翻转诱导荧光对比的影响(演讲记录)
金刚石基氮空位(NV)中心是量子信息技术中有应用前景的固体缺陷。一方面,人们对通过将它们与等离子体结构耦合来增强它们的单光子发射越来越感兴趣。另一方面,发射强度对电子自旋态的依赖使室温量子信息读出成为可能。我们研究了在增加光子态密度的条件下自旋共振产生的荧光对比。在支持等离子体模式的结构耦合的金刚石纳米晶体中NV中心系综的荧光观测实验证实了分析结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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