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- W2022985592 abstract "We report the use of an atomic magnetometer based on nonlinear magneto-opticalrotation with frequency-modulated light to detect nuclear magnetization ofxenon gas. The magnetization of a spin-exchange-polarized xenon sample ($1.7text{ }text{ }{mathrm{c}mathrm{m}}^{3}$ at a pressure of 5 bars, natural isotopic abundance,polarization $1%$), prepared remotely to the detection apparatus, is measured withan atomic sensor. An average magnetic field of $ensuremath{sim}10text{ }mathrm{n}mathrm{G}$ induced by the xenon sample on the 10 cm diameteratomic sensor is detected with signal-to-noise ratio $ensuremath{sim}10$, limited by residual noise in the magnetic environment. The possibilityof using modern atomic magnetometers as detectors of nuclear magnetic resonanceand in magnetic resonance imaging is discussed. Atomic magnetometers appearto be ideally suited for emerging low-field and remote-detection magneticresonance applications." @default.
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- W2022985592 date "2004-10-11" @default.
- W2022985592 modified "2023-10-06" @default.
- W2022985592 title "Hyperpolarized Xenon Nuclear Spins Detected by Optical Atomic Magnetometry" @default.
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- W2022985592 doi "https://doi.org/10.1103/physrevlett.93.160801" @default.
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