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Proximity-Induced Artefacts in Magnetic Imaging with Nitrogen-Vacancy Ensembles in Diamond

机译:钻石中的氮空缺集合在磁成像中的感应感应伪像

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摘要

Magnetic imaging with ensembles of nitrogen-vacancy (NV) centres in diamond is a recently developed technique that allows for quantitative vector field mapping. Here we uncover a source of artefacts in the measured magnetic field in situations where the magnetic sample is placed in close proximity (a few tens of nm) to the NV sensing layer. Using magnetic nanoparticles as a test sample, we find that the measured field deviates significantly from the calculated field, in shape, amplitude and even in sign. By modelling the full measurement process, we show that these discrepancies are caused by the limited measurement range of NV sensors combined with the finite spatial resolution of the optical readout. We numerically investigate the role of the stand-off distance to identify an artefact-free regime, and discuss an application to ultrathin materials. This work provides a guide to predict and mitigate proximity-induced artefacts that can arise in NV-based wide-field magnetic imaging, and also demonstrates that the sensitivity of these artefacts to the sample can make them a useful tool for magnetic characterisation.
机译:具有钻石中氮空位(NV)中心集合的磁成像技术是最近开发的技术,可用于定量矢量场映射。在这里,当磁性样品被放置在与NV感应层非常接近(几十纳米)的情况下,我们发现了测量磁场中的伪影来源。使用磁性纳米粒子作为测试样品,我们发现测量的场在形状,幅度甚至符号上都与计算的场明显不同。通过对整个测量过程进行建模,我们表明这些差异是由于NV传感器的测量范围有限以及光学读数的有限空间分辨率引起的。我们在数值上研究了对峙距离在确定无伪影的情况下的作用,并讨论了在超薄材料中的应用。这项工作为预测和减轻在基于NV的广域磁成像中可能出现的邻近感应伪像提供了指南,并且还证明了这些伪像对样品的敏感性可以使它们成为进行磁表征的有用工具。

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