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Scanning Single Quantum Emitter Fluorescence Lifetime Imaging: Quantitative Analysis of the Local Density of Photonic States

机译:扫描单个量子发射器荧光寿命成像:光子态局部密度的定量分析

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摘要

Their intrinsic properties render single quantum systems as ideal tools for quantum enhanced sensing and microscopy. As an additional benefit, their size is typically on an atomic scale that enables sensing with very high spatial resolution. Here, we report on utilizing a single nitrogen vacancy center in nanodiamond for performing threedimensional scanning-probe fluorescence lifetime imaging microscopy. By measuring changes of the single emitter’s lifetime, information on the local density of optical states is acquired at the nanoscale. Threedimensional ab initio discontinuous Galerkin time-domain simulations are used in order to verify the results and to obtain additional insights. This combination of experiment and simulations to gather quantitative information on the local density of optical states is of direct relevance for the understanding of fundamental quantum optical processes as well as for the engineering of novel photonic and plasmonic devices.
机译:它们的固有特性使单量子系统成为进行量子增强的传感和显微术的理想工具。另外一个好处是,它们的大小通常在原子尺度上,可以实现很高的空间分辨率。在这里,我们报告利用纳米金刚石中的单个氮空位中心进行三维扫描探针荧光寿命成像显微镜。通过测量单个发射器寿命的变化,可以在纳米级获得有关光学状态局部密度的信息。使用三维从头开始的不连续Galerkin时域仿真来验证结果并获得更多的见解。实验和模拟的这种结合,用于收集有关光学态局部密度的定量信息,对于基本的量子光学过程的理解以及新型光子和等离激元器件的工程设计具有直接的意义。

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