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High-resolution vector microwave magnetometry based on solid-state spins in diamond.


ABSTRACT: The measurement of the microwave field is crucial for many developments in microwave technology and related applications. However, measuring microwave fields with high sensitivity and spatial resolution under ambient conditions remains elusive. In this work, we propose and experimentally demonstrate a scheme to measure both the strength and orientation of the microwave magnetic field by utilizing the quantum coherent dynamics of nitrogen vacancy centres in diamond. An angular resolution of 5.7?mrad and a sensitivity of 1.0??T?Hz(-1/2) are achieved at a microwave frequency of 2.6000?GHz, and the microwave magnetic field vectors generated by a copper wire are precisely reconstructed. The solid-state microwave magnetometry with high resolution and wide frequency range that can work under ambient conditions proposed here enables unique potential applications over other state-of-art microwave magnetometry.

SUBMITTER: Wang P 

PROVIDER: S-EPMC4383011 | biostudies-literature | 2015

REPOSITORIES: biostudies-literature

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High-resolution vector microwave magnetometry based on solid-state spins in diamond.

Wang Pengfei P   Yuan Zhenheng Z   Huang Pu P   Rong Xing X   Wang Mengqi M   Xu Xiangkun X   Duan Changkui C   Ju Chenyong C   Shi Fazhan F   Du Jiangfeng J  

Nature communications 20150323


The measurement of the microwave field is crucial for many developments in microwave technology and related applications. However, measuring microwave fields with high sensitivity and spatial resolution under ambient conditions remains elusive. In this work, we propose and experimentally demonstrate a scheme to measure both the strength and orientation of the microwave magnetic field by utilizing the quantum coherent dynamics of nitrogen vacancy centres in diamond. An angular resolution of 5.7 m  ...[more]

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