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Optimizing longitudinal spin relaxation in miniaturized optically pumped magnetometers

Title: Optimizing longitudinal spin relaxation in miniaturized optically pumped magnetometers
Authors: McWilliam, A. P.; Dyer, S.; Hunter, D.; Mrozowski, M.; Ingleby, S. J.; Sharp, O.; Burt, D. P.; Griffin, P. F.; McGilligan, J. P.; Riis, E.
Publication Year: 2024
Collection: University of Strathclyde Glasgow: Strathprints
Subject Terms: Physics
Description: The microfabrication of cesium vapor cells for optically pumped magnetometry relies on optimization of buffer gas pressure in order to maximize atomic coherence time and sensitivity to external magnetic signals. We demonstrate post-bond nitrogen buffer gas pressure tuning through localized heating of an integrated micro-pill dispenser. We characterize the variation in the intrinsic longitudinal relaxation rate, γ10, and magnetic sensitivity, as a function of the resulting nitrogen buffer gas pressure. Measurements are conducted through employing an optically pumped magnetometer operating in a free-induction-decay configuration. γ10 is extracted across a range of nitrogen pressures between ∼ 60 - 700 Torr, measuring a minimum of 140 Hz at 115 Torr. Additionally, we achieve sensitivities as low as 130 fT/ √ Hz at a bias field amplitude of ∼ 50 μT. With the optimal nitrogen buffer gas pressure now quantified and achievable post-fabrication, these mass-producible cells can be tailored to suit a variety of sensing applications, ensuring peak magnetometer performance.
Document Type: article in journal/newspaper
File Description: text
Language: unknown
ISSN: 2331-7043
Relation: https://strathprints.strath.ac.uk/91225/7/McWilliam-eta-PRA-2024-Optimizing-longitudinal-spin-relaxation.pdf; McWilliam, A. P. and Dyer, S. and Hunter, D. and Mrozowski, M. and Ingleby, S. J. and Sharp, O. and Burt, D. P. and Griffin, P. F. and McGilligan, J. P. and Riis, E. (2024 ) Optimizing longitudinal spin relaxation in miniaturized optically pumped magnetometers. Physical Review Applied , 22 (6). 064024. ISSN 2331-7043
DOI: 10.1103/PhysRevApplied.22.064024
Availability: https://strathprints.strath.ac.uk/91225/; https://doi.org/10.1103/PhysRevApplied.22.064024
Rights: cc_by
Accession Number: edsbas.5B2756FF
Database: BASE