Chen Yang, Guan-Hua Zuo, Zhuang-Zhuang Tian, Yu-Chi Zhang, Tian-Cai Zhang. Influence of pump light on sensitivity of magnetometer based on linearly polarized Bell-Bloom structure [J]. Acta Physica Sinica, 2019, 68(9): 090701-1

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- Acta Physica Sinica
- Vol. 68, Issue 9, 090701-1 (2019)

Fig. 1. Bell-Bloom configuration with linearly polarized pump beam.线极化的Bell-Bloom测磁系统基本原理图

Fig. 2. Interaction between pump light and cesium atoms: (a) Light-atom interaction; (b) interaction between linearly polarized pump light and cesium atoms.抽运光与铯原子相互作用 (a)光与铯原子相互作用; (b)线偏振的抽运光与铯原子相互作用

Fig. 3. Evolution of the populations in each Zeeman sublevels with time of cesium atoms’s ground state
and
: (a) Results of direct pump with the pump intensity
; (b) results of indirect pump with the pump intensity
铯原子基态
和
各个磁子能级的布居数随时间的演化 (a)
时, 直接抽运的情况; (b)
时, 间接抽运的情况

Fig. 4. Signal amplitude
and relative sensitivity
change along with the pump intensity
under the condition of magnetic resonance: (a) Direct pump with
; (b) indirect pump with
磁共振时, 信号幅度
与约化磁场灵敏度
随抽运光光强
的变化 (a)直接抽运,
; (b)间接抽运,

Fig. 5. Experimental setup. SAS, saturated absorption spectrum; VNDF, variable neutral density filter; HWP, half wave plate; PBS, polarization beam splitter; HR, high reflectivity mirror; GTP, Glan-Tylor prism; WP, Wollaston prism; EO-AM, electro-optical amplitude modulator; BPD, balanced photodetector; LIA, lock-in amplifier; AC, alternating current power supply; DC, direct current power supply; HC, Helmholtz coils; OSC, oscilloscope; SA, spectrum analyzer; P, direction of light polarization实验装置图(SAS, 饱和吸收谱; VNDF, 连续可变衰减片; HWP, 半波片; PBS, 偏振分束器; HR, 高反镜; GTP, 格兰泰勒棱镜; WP, 渥拉斯顿棱镜; EO-AM, 电光振幅调制器; BPD, 平衡探测器; LIA, 锁相放大器; AC, 交流电源; DC, 直流电源; HC, 亥姆霍兹线圈; OSC, 示波器; SA, 频谱分析仪; P, 光的偏振方向)

Fig. 6. Spectra of magnetic resonance with direct pump and indirect pump.直接抽运与间接抽运的磁共振谱线

Fig. 7. Variation of magnetic resonance linewidth
with pump intensity
: (a) Direct pump,
; (b) indirect pump,
/W
磁共振线宽
随抽运光光强
的变化 (a)直接抽运,
; (b)间接抽运,

Fig. 8. Variation of SNR and sensitivity
with the pump intensity
under the condition of magnetic resonance: (a) Direct pump; (b) indirect pump
磁共振时, 信噪比SNR与磁场灵敏度
随抽运光光强
的变化 (a)直接抽运; (b)间接抽运

Fig. 9. sensitivity
and pump intensity
with indirect pump under the condition of different relaxation rate
.
在自旋弛豫率
不同时, 间接抽运的约化磁场灵敏度
随抽运光光强
的变化
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