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A fast determination method for identifying the spin exchange relaxation free regime of atomic magnetometer

机译:一种确定原子磁力计自旋交换无弛豫态的快速确定方法

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Spin-exchange-relaxation-free (SERF) atomic magnetometer is the most sensitive magnetic detector in the world at present due to the fact that the broadening of spin-exchange collision is eliminated by operating at high alkali-mental density and low magnetic field. On that condition, the precession frequency of high-density alkali vapor becomes a constant fractional value of Larmor frequency, and the width of magnetic-resonance line gets narrower. This paper analyzes the principle of SERF regime and proposes an innovation based on measuring the slowing-down Larmor frequency directly instead of the complicated conventional method based on the width of magnetic resonance line. We calculated and simulated the slowing-down precession frequency and linewidth of magnetic resonance on certain conditions. The experimental results have verified that the method is valid to identify the regime of SERF of atomic magnetometer via detecting the slowing-down precession frequency.
机译:自旋交换无弛豫(SERF)原子磁力计是目前世界上最灵敏的磁检测器,这是因为通过在高碱金属密度和低磁场下运行消除了自旋交换碰撞的加宽。在该条件下,高密度碱蒸汽的进动频率变为拉莫尔频率的常数分数值,并且磁共振线的宽度变窄。本文分析了SERF机制的原理,提出了一种直接测量减速拉莫尔频率的创新方法,而不是基于磁共振线宽度的复杂传统方法。我们计算并模拟了在某些条件下磁共振的减速进动频率和线宽。实验结果证明,该方法通过检测减速进动频率可以有效地识别原子磁力仪的SERF状态。

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