论文标题
使用单电子自旋的纳米级矢量电场成像
Nanoscale vector electric field imaging using a single electron spin
论文作者
论文摘要
在环境温度下对基本电荷进行纳米级电场成像的能力将具有多种跨学科应用。虽然钻石中的氮呈(NV)中心能够具有高敏性电磁法,但迄今为止,示范仅限于宏观场特征或检测到内部钻石本身内部的单电荷。在这项工作中,我们通过使用浅NV中心来大大扩展这些功能,以对带有纳米级分辨率的带电原子力显微镜尖端的电场成像。这是通过测量由于交流电场引起的NV自旋共振的鲜明变化来实现的。为了实现我们首次采用的这一壮举,将QDYNE与扫描量子显微镜的整合。我们证明了$η_e= 5.3 $ cush/$ \ sqrt {\ text {hz}} $的单一电荷灵敏度和sub-charge检测($ 0.68E $)。该概念验证实验为使用钻石中的NV中心进一步感测和成像的动机。
The ability to perform nanoscale electric field imaging of elementary charges at ambient temperatures will have diverse interdisciplinary applications. While the nitrogen-vacancy (NV) center in diamond is capable of high-sensitivity electrometry, demonstrations have so far been limited to macroscopic field features or detection of single charges internal to diamond itself. In this work we greatly extend these capabilities by using a shallow NV center to image the electric field of a charged atomic force microscope tip with nanoscale resolution. This is achieved by measuring Stark shifts in the NV spin-resonance due to AC electric fields. To achieve this feat we employ for the first time, the integration of Qdyne with scanning quantum microscopy. We demonstrate near single charge sensitivity of $η_e = 5.3$ charges/$\sqrt{\text{Hz}}$, and sub-charge detection ($0.68e$). This proof-of-concept experiment provides the motivation for further sensing and imaging of electric fields using NV centers in diamond.