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Suppression of spin-exchange relaxation in tilted magnetic fields within the geophysical range

机译:地球物理范围内倾斜磁场中的旋转交换弛豫的抑制

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摘要

We present a detailed experimental and theoretical study on the relaxation of spin coherence due to the spin-exchange mechanism arising in the electronic ground states of alkali-metal vapor atoms. As opposed to the well-explored formation of a stretched state in a longitudinal geometry (magnetic field parallel to the laser propagation direction) we employ adapted hyperfine-selective optical pumping in order to suppress spin-exchange relaxation. By comparing measurements of the intrinsic relaxation rate of the spin coherence in the ground state of cesium atoms with detailed density-matrix simulations we show that the relaxation due to spin-exchange collisions can be reduced substantially even in a tilted magnetic field of geomagnetic strength, the major application case of scalar magnetic surveying. This explains the observed striking improvement in sensitivity and further deepens the understanding of the light-narrowed M-x magnetometer, which was presented recently. Additionally, new avenues for investigating the dynamics in alkali-metal atoms governed by the spin-exchange interaction and interacting with arbitrary external fields open up.
机译:我们在碱金属蒸汽原子中的电子接地状态下产生的旋转交换机制引起了一种详细的实验和理论研究。与纵向几何形状(平行于激光传播方向平行的磁场)的拉伸状态的探索形成相反,我们采用适应的高血色选择性光学泵浦,以抑制自旋交换弛豫。通过比较具有详细密度 - 基质模拟的铯原子的地面状态下旋转相干率的测量结果,我们表明,即使在倾斜的地磁强度的倾斜磁场中,旋转碰撞引起的弛豫也会显着降低,标量磁测量的主要应用案例。这解释了观察到的敏感性的引人注目的改善,并进一步加深了最近呈现的光变窄M-X磁力计的理解。此外,用于调查碱金属原子的动态的新途径由自旋交换相互作用控制,并与任意外部领域进行交互。

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