TY - JOUR
T1 - Measurement and Suppression of Transverse Optical Pumping in a Spin-Exchange Relaxation-Free Co-Magnetometer
AU - Wei, Yao
AU - Zhai, Yueyang
AU - Li, Renjie
AU - Liu, Sixun
AU - Fan, Wenfeng
AU - Quan, Wei
N1 - Publisher Copyright:
© 1963-2012 IEEE.
PY - 2023
Y1 - 2023
N2 - The transverse optical pumping (TOP) introduced by a probe beam can result in a polarization error in the output signal of a spin-exchange relaxation-free (SERF) co-magnetometer. In this article, a model capable of quantitatively evaluating TOP in a SERF co-magnetometer is established based on three characteristics of the probe beam. According to this model, a novel fast measurement method for TOP based on steady-state response output signals and longitudinal polarization information is proposed. Furthermore, a method of suppressing TOP based on counter-propagating beam is suggested, and the circular polarization-induced TOP is effectively reduced by finely adjusting the amount of phase retardation of an octantal waveplate. Eventually, the counter-propagating beam scheme achieves a 22.74% TOP suppression ratio. The stability of both the short- and long-term outputs of the SERF co-magnetometer is improved and the lowest point of the Allan variance is 0.006°/h better than the original. Moreover, the coupling effect between the probe beam power fluctuation and output signal bias of the SERF co-magnetometer is decreased.
AB - The transverse optical pumping (TOP) introduced by a probe beam can result in a polarization error in the output signal of a spin-exchange relaxation-free (SERF) co-magnetometer. In this article, a model capable of quantitatively evaluating TOP in a SERF co-magnetometer is established based on three characteristics of the probe beam. According to this model, a novel fast measurement method for TOP based on steady-state response output signals and longitudinal polarization information is proposed. Furthermore, a method of suppressing TOP based on counter-propagating beam is suggested, and the circular polarization-induced TOP is effectively reduced by finely adjusting the amount of phase retardation of an octantal waveplate. Eventually, the counter-propagating beam scheme achieves a 22.74% TOP suppression ratio. The stability of both the short- and long-term outputs of the SERF co-magnetometer is improved and the lowest point of the Allan variance is 0.006°/h better than the original. Moreover, the coupling effect between the probe beam power fluctuation and output signal bias of the SERF co-magnetometer is decreased.
KW - Counter-propagating beam
KW - polarization
KW - spin-exchange-relaxation-free (SERF) co-magnetometer
KW - transverse optical pumping (TOP) of probe beam
UR - https://www.scopus.com/pages/publications/85144092904
U2 - 10.1109/TIM.2022.3224540
DO - 10.1109/TIM.2022.3224540
M3 - 文章
AN - SCOPUS:85144092904
SN - 0018-9456
VL - 72
JO - IEEE Transactions on Instrumentation and Measurement
JF - IEEE Transactions on Instrumentation and Measurement
M1 - 7000208
ER -