All-optical, Microwave-free NV-Diamond Magnetometer for High Magnetic Field Environment
ORAL
Abstract
Nitrogen vacancy (NV) magnetometry has commonly utilized microwave sources to manipulate the sensor's spin state. However, this technique becomes technically challenging under an environment with a Tesla-scale magnetic field or extreme conditions that prohibit the usage of microwave. By leveraging the effect that an off-axis magnetic field to the NV axis quenches its emitted photoluminescence, we present an all-optical, microwave-free broadband quantum diamond magnetometer. We demonstrate magnetic sensing over an extended bias magnetic field range — beyond the ground-state level anti-crossing (GSLAC) region — with a more integrated design.
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Presenters
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Xiechen Zheng
University of Maryland, College Park
Authors
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Xiechen Zheng
University of Maryland, College Park
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Jeyson Támara-Isaza
University of Maryland, College Park
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Kristine V Ung
University of Maryland, College Park
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Connor A Hart
University of Maryland, College Park
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Matthew J Turner
University of Maryland, College Park
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Ronald L Walsworth
University of Maryland, College Park