Lu Jixi, Qian Zheng, Fang Jiancheng, Quan Wei
School of Instrument Science and Opto-Electronics Engineering, Beihang University, Beijing 100191, China.
Rev Sci Instrum. 2015 Aug;86(8):083103. doi: 10.1063/1.4927720.
This paper presents a method to reduce the vapor cell temperature error of the spin-exchange-relaxation-free (SERF) magnetometer. The fluctuation of cell temperature can induce variations of the optical rotation angle, resulting in a scale factor error of the SERF magnetometer. In order to suppress this error, we employ the variation of the probe beam absorption to offset the variation of the optical rotation angle. The theoretical discussion of our method indicates that the scale factor error introduced by the fluctuation of the cell temperature could be suppressed by setting the optical depth close to one. In our experiment, we adjust the probe frequency to obtain various optical depths and then measure the variation of scale factor with respect to the corresponding cell temperature changes. Our experimental results show a good agreement with our theoretical analysis. Under our experimental condition, the error has been reduced significantly compared with those when the probe wavelength is adjusted to maximize the probe signal. The cost of this method is the reduction of the scale factor of the magnetometer. However, according to our analysis, it only has minor effect on the sensitivity under proper operating parameters.
本文提出了一种降低无自旋交换弛豫(SERF)磁力计气室温度误差的方法。气室温度的波动会引起旋光角的变化,从而导致SERF磁力计的比例因子误差。为了抑制这种误差,我们利用探测光束吸收的变化来抵消旋光角的变化。对我们方法的理论讨论表明,通过将光深设置为接近1,可以抑制由气室温度波动引入的比例因子误差。在我们的实验中,我们调整探测频率以获得各种光深,然后测量比例因子相对于相应气室温度变化的变化。我们的实验结果与理论分析吻合良好。在我们的实验条件下,与将探测波长调整到使探测信号最大化时相比,误差已显著降低。这种方法的代价是磁力计比例因子的降低。然而,根据我们的分析,在适当的操作参数下,它对灵敏度的影响较小。