Magnetometry in a diamond anvil cell using nitrogen vacancy centers in a nanodiamond ensemble.

IF 1.3 4区 工程技术 Q3 INSTRUMENTS & INSTRUMENTATION
David P Shelton, Waldo Cabriales, Ashkan Salamat
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引用次数: 0

Abstract

The emerging field of optical magnetometry utilizing negative-charged nitrogen vacancy (NV-) centers provides a highly sensitive lab bench technique for spatially resolved physical property measurements. Their implementation in high pressure diamond anvil cell (DAC) environments will become common as other techniques are often limited due to the spatial constraints of the sample chamber. Apparatus and techniques are described here permitting for more general use of magnetic field measurements inside a DAC using continuous wave optical detected magnetic resonance in NV- centers in a layer of nanodiamonds. A microstrip antenna delivers a uniform microwave field to the DAC and is compatible with simple metal gaskets, and the sensor layer of deposited nanodiamonds allows for simple determination of the magnetic field magnitude for B in the 1-100 G range. The ferromagnetic transition in iron at 18 GPa is measured with the apparatus, along with its hysteretic response.

利用纳米金刚石组合中的氮空位中心在金刚石砧电池中进行磁测量。
利用带负电荷的氮空位(NV-)中心进行光学磁测量的新兴领域为空间分辨物理特性测量提供了一种高灵敏度的实验室工作台技术。由于其他技术往往受限于样品室的空间限制,因此在高压金刚石砧室(DAC)环境中实施这种技术将变得非常普遍。这里描述的仪器和技术允许在 DAC 内使用连续波光学检测磁共振对纳米金刚石层中的 NV- 中心进行更普遍的磁场测量。微带天线可为 DAC 提供均匀的微波场,并与简单的金属垫圈兼容,而沉积纳米金刚石的传感器层可简单测定 B 在 1-100 G 范围内的磁场大小。利用该仪器测量了铁在 18 GPa 下的铁磁转变及其滞后响应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Review of Scientific Instruments
Review of Scientific Instruments 工程技术-物理:应用
CiteScore
3.00
自引率
12.50%
发文量
758
审稿时长
2.6 months
期刊介绍: Review of Scientific Instruments, is committed to the publication of advances in scientific instruments, apparatuses, and techniques. RSI seeks to meet the needs of engineers and scientists in physics, chemistry, and the life sciences.
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