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Sensitivity Improvement of Spin-Exchange Relaxation Free Atomic Magnetometers by Hybrid Optical Pumping of Potassium and Rubidium

机译:钾和Rub的混合光泵浦提高自旋交换弛豫自由原子磁强计的灵敏度

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An optically pumped atomic magnetometer using a hybrid cell of potassium and rubidium atoms was demonstrated to yield high sensitivity to magnetic fields. We operated the magnetometer with the four possible combinations of optically pumped and optically probed atoms and found that the combination of optically pumped potassium and optically probed rubidium showed the highest sensitivity among the four combinations because the rubidium atoms were denser than those of potassium. Furthermore, we investigated the dependence of the sensitivity on the power densities of the pump and probe beams and the wavelength of the probe beam. The magnetometer using the hybrid cell required higher pump-beam power and had narrower magnetic linewidth than those of the single alkali-metal cell. However, the magnetic linewidth was larger than the theoretical value, ignoring the spin relaxation caused by the spin-exchange collisions. By adjusting the laser conditions, the highest sensitivity approached 30 ${rm fT}_{rm rms}/{rm Hz}^{1/2}$ .
机译:事实证明,使用钾和cell原子混合电池的光泵原子磁力计对磁场具有很高的灵敏度。我们用光泵浦和光探测原子的四种可能组合操作磁力计,发现光泵浦钾和光探测rub的组合在四种组合中显示出最高的灵敏度,因为the原子比钾原子致密。此外,我们研究了灵敏度对泵浦和探测光束的功率密度以及探测光束的波长的依赖性。与单碱金属电池相比,使用混合电池的磁力计需要更高的泵浦束功率,并且磁线宽度更窄。但是,磁线宽大于理论值,而忽略了自旋交换碰撞引起的自旋弛豫。通过调整激光条件,最高灵敏度接近30 <公式公式类型=“ inline”> $ {rm fT} _ {rm rms} / {rm Hz} ^ {1/2} $ < / tex>

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