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Light narrowing of cesium magnetic-resonance lines in a radio-frequency atomic magnetometer

机译:射频原子磁仪中铯磁共振线的光缩小

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摘要

The magnetic-resonance lines of alkali atoms are broadened considerably by the spin-exchange collisions for a radio-frequency magnetometer operating at high temperature. The resonance linewidths of cesium atoms are derived by solving the relaxation equations. When spin-exchange relaxation dominates, a light narrowing effect is predicted. For the cesium atomic radio-frequency magnetometer operates at high temperature, a remarkable narrowing of the cesium magnetic-resonance lines are observed by increasing the pump power. The Cs-Cs spin-exchange relaxation is partially suppressed by light narrowing. This study helps to expand the applications of radio-frequency magnetometers in the high-sensitivity radio-frequency magnetic-field detection.
机译:通过在高温下操作的射频磁力计的自旋交换碰撞,碱原子的磁共振线显着扩大。通过求解松弛方程来推导铯原子的共振线。当自旋交换放松主导地位时,预测了光缩小效果。对于铯原子射频磁力计在高温下操作,通过增加泵功率来观察磁共振线的显着变窄。通过轻微缩小,CS-CS自旋交换弛豫部分抑制。本研究有助于扩展射频磁力计在高灵敏度射频磁场检测中的应用。

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