论文标题

使用氮呈合奏的光学增强电场传感

Optically Enhanced Electric Field Sensing Using Nitrogen-Vacancy Ensembles

论文作者

Block, M., Kobrin, B., Jarmola, A., Hsieh, S., Zu, C., Figueroa, N. L., Acosta, V. M., Minguzzi, J., Maze, J. R., Budker, D., Yao, N. Y.

论文摘要

钻石中的氮气呈(NV)中心已显示出固有局部电场传感器的希望,能够检测具有纳米分辨率的单个电荷。与NV合奏合作,我们证明了对内部电场环境的详细理解可以增强外部电场的敏感性。我们沿着两个互补路径遵循此逻辑。首先,使用在NV的零值线附近调谐的激发,我们在低温温度下进行了光学检测到的磁共振(ODMR)光谱,以精确测量NV中心对电场的激发态敏感性。在此过程中,我们证明了特征性观察到的对比反转是由自旋选择性光泵和NV中心的局部电荷分布之间的相互作用引起的。其次,在这种理解的推动下,我们提出并分析了一种使用NV合奏的新型方案,用于光学增强电场传感。我们估计我们的方法应在直流电场灵敏度方面可以提高数量级。

Nitrogen-vacancy (NV) centers in diamond have shown promise as inherently localized electric-field sensors, capable of detecting individual charges with nanometer resolution. Working with NV ensembles, we demonstrate that a detailed understanding of the internal electric field environment enables enhanced sensitivity in the detection of external electric fields. We follow this logic along two complementary paths. First, using excitation tuned near the NV's zero-phonon line, we perform optically detected magnetic resonance (ODMR) spectroscopy at cryogenic temperatures in order to precisely measure the NV center's excited-state susceptibility to electric fields. In doing so, we demonstrate that the characteristically observed contrast inversion arises from an interplay between spin-selective optical pumping and the NV centers' local charge distribution. Second, motivated by this understanding, we propose and analyze a novel scheme for optically-enhanced electric-field sensing using NV ensembles; we estimate that our approach should enable order of magnitude improvements in the DC electric-field sensitivity.

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