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Scanning nitrogen-vacancy magnetometry down to 350 mK

机译:扫描低至 350 mK 的氮空位磁力计

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We report on the implementation of a scanning nitrogen-vacancy (NV) magnetometer in a dry dilution refrigerator. Using pulsed optically detected magnetic resonance combined with efficient microwave delivery through a co-planar waveguide, we reach a base temperature of 350 mK, limited by experimental heat load and thermalization of the probe. We demonstrate scanning NV magnetometry by imaging superconducting vortices in a 50-nm-thin aluminum microstructure. The sensitivity of our measurements is approximately 3 mu T per square root Hz. Our work demonstrates the feasibility for performing noninvasive magnetic field imaging with scanning NV centers at sub-Kelvin temperatures. (C) 2022 Author(s).
机译:我们报告了在干式稀释冰箱中实施扫描氮空位 (NV) 磁力计的情况。使用脉冲光学检测的磁共振与通过共面波导的高效微波传输相结合,我们达到了 350 mK 的基本温度,这受到实验热负荷和探头热化的限制。我们通过在 50 nm 薄的铝微结构中对超导涡旋进行成像来演示扫描 NV 磁力计。我们测量的灵敏度约为每平方根赫兹 3 μ T。我们的工作证明了在亚开尔文温度下使用扫描NV中心进行无创磁场成像的可行性。(c) 2022 年作者。

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