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DOE OSTI · 2345817

Four-channel optically pumped magnetometer for a magnetoencephalography sensor array

Abstract

We present a novel four-channel optically pumped magnetometer (OPM) for magnetoencephalography that utilizes a two-color pump/probe scheme on a single optical axis. We characterize its performance across 18 built sensor modules. The new sensor implements several improvements over our previously developed sensor including lower vapor-cell operating temperature, improved probe-light detection optics, and reduced optical power requirements. The sensor also has new electromagnetic field coils on the sensor head which are designed using stream-function-based current optimization. We detail the coil design methodology and present experimental characterization of the coil performance. The magnetic sensitivity of the sensor is on average 12.3 fT/rt-Hz across the 18 modules while the average gradiometrically inferred sensitivity is about 6.0 fT/rt-Hz. The sensor 3-dB bandwidth is 100 Hz on average. The on-sensor coil performance is in good agreement with the simulations.

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BibTeXRIS

Iivanainen, Joonas (ORCID:0000000160344604), Carter, Tony R., Dhombridge, Jonathan E., Read, Timothy S., Campbell, Kaleb, Abate, Quinn, Ridley, David M., Borna, Amir, Schwindt, Peter D. D. (ORCID:0000000275701229). 2024-05-03. Four-channel optically pumped magnetometer for a magnetoencephalography sensor array. https://doi.org/10.1364/oe.517961

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