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Orientational dependence of optically detected magnetic resonance signals in laser-driven atomic magnetometers

机译:激光驱动原子磁力计中光学检测到的磁共振信号的方向依赖性

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摘要

We have investigated the dependence of lock-in-demodulated Mx-magnetometer signals on the orientation of the static magnetic field B0 of interest. Magnetic resonance spectra for 2400 discrete orientations of B0 covering a 4π solid angle have been recorded by a PC-controlled steering and data acquisition system. Off-line fits by previously derived lineshape functions allow us to extract the relevant resonance parameters (shape, amplitude, width, and phase) and to represent their dependence on the orientation of B0 with respect to the laser beam propagation direction. We have performed this study for two distinct Mx-magnetometer configurations, in which the rf- field is either parallel or perpendicular to the light propagation direction. The results confirm well the algebraic theoretical model functions. We suggest that small discrepancies are related to hitherto uninvestigated atomic alignment contributions.
机译:我们已经研究了锁定解调的Mx磁力计信号对目标静磁场B0的方向的依赖性。由PC控制的转向和数据采集系统记录了B0的2400个离散方向的共振光谱,覆盖4π立体角。先前导出的线形函数的离线拟合使我们能够提取相关的共振参数(形状,幅度,宽度和相位),并表示它们对B0相对于激光束传播方向的定向的依赖性。我们已经针对两种不同的Mx磁力计配置进行了这项研究,其中rf场平行于或垂直于光传播方向。结果很好地证明了代数理论模型的功能。我们建议,小的差异与迄今未研究的原子排列贡献有关。

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