A new planar multipass vapor cell achieves long coherence and high optical depth, enabling compact FID magnetometers with 28 fT/√Hz differential sensitivity.
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A new theoretical model for optical pumping in the quasi-high-pressure regime shows distinct behaviors in light absorption, spin polarization, and magnetic resonance linewidths compared to the high-pressure limit.
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FID Magnetometer Based on Paraffin-Coated Planar Reflective Multipass Cells
A new planar multipass vapor cell achieves long coherence and high optical depth, enabling compact FID magnetometers with 28 fT/√Hz differential sensitivity.
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Optical pumping of alkali-metal vapor in the quasi-high-pressure regime
A new theoretical model for optical pumping in the quasi-high-pressure regime shows distinct behaviors in light absorption, spin polarization, and magnetic resonance linewidths compared to the high-pressure limit.