Simulation of Scalar-Mode Optically Pumped Magnetometers to Search Optimal Operating Conditions
In recent years, measuring biomagnetic fields in the Earth's field by differential measurements of scalar-mode OPMs have been actively attempted. In this study, the sensitivity of the scalar-mode OPMs under the geomagnetic environment in the laboratory was studied by numerical simulation. Altho...
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Veröffentlicht in: | IEICE Transactions on Electronics 2024/06/01, Vol.E107.C(6), pp.164-170 |
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Sprache: | eng |
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Zusammenfassung: | In recent years, measuring biomagnetic fields in the Earth's field by differential measurements of scalar-mode OPMs have been actively attempted. In this study, the sensitivity of the scalar-mode OPMs under the geomagnetic environment in the laboratory was studied by numerical simulation. Although the noise level of the scalar-mode OPM in the laboratory environment was calculated to be 104pT/$\sqrt{\mathrm{Hz}}$, the noise levels using the first-order and the second-order differential configurations were found to be 529fT/cm/$\sqrt{\mathrm{Hz}}$ and 17.2fT/cm2/$\sqrt{\mathrm{Hz}}$, respectively. This result indicated that scalar-mode OPMs can measure very weak magnetic fields such as MEG without high-performance magnetic shield roomns. We also studied the operating conditions by varying repetition frequency and temperature. We found that scalar-mode OPMs have an upper limit of repetition frequency and temperature, and that the repetition frequency should be set below 4 kHz and the temperature should be set below 120°C. |
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ISSN: | 0916-8524 1745-1353 |
DOI: | 10.1587/transele.2023SEI0002 |