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Abstract
We propose a high-sensitivity magnetometry scheme based on a diamond Raman laser with visible pump absorption by an ensemble of coherently microwave driven negatively charged nitrogen-vacancy centres (NV−) in the same diamond crystal. The NV− centres' absorption and emission are spin-dependent. We show how the varying absorption of the NV− centres changes the Raman laser output. A shift in the diamond Raman laser threshold and output occurs with the external magnetic field and microwave driving. We develop a theoretical framework with steady-state solutions to describe the effects of coherently driven NV− centres including the charge state switching between NV− and its neutral charge state NV0 in a diamond Raman laser. We discuss that such a laser working at the threshold can be employed for magnetic field sensing. In contrast to previous studies on NV− magnetometry with visible laser absorption, the laser threshold magnetometry method is expected to have low technical noise, due to low background light in the measurement signal. For magnetic-field sensing, we project a shot-noise limited DC sensitivity of a few pT /√
Hz in a well-calibrated cavity with realistic parameters. This sensor employs the broad visible absorption of NV− centres and unlike previous laser threshold magnetometry proposals it does not rely on active NV− centre lasing or an infrared laser medium at the specific wavelength of the NV− centre's infrared absorption line.
Original language | English |
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Article number | 025003 |
Pages (from-to) | 1-13 |
Number of pages | 13 |
Journal | Materials for Quantum Technology |
Volume | 1 |
Issue number | 2 |
DOIs | |
Publication status | Published - 21 Jun 2021 |
Bibliographical note
© 2021 The Author(s). Published by IOP Publishing Ltd. Version archived for private and non-commercial use with the permission of the author/s and according to publisher conditions. For further rights please contact the publisher.Keywords
- nitrogen-vacancy centres
- laser threshold magnetometry
- diamond Raman laser
- diamond colour centres
- optical micro-cavity
Fingerprint
Dive into the research topics of 'Absorptive laser threshold magnetometry: combining visible diamond Raman lasers and nitrogen-vacancy centres'. Together they form a unique fingerprint.Projects
- 1 Finished
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Designer defects in diamond for solid state quantum networks
Rogers, L.
1/03/17 → 30/07/20
Project: Research