Title :
The study on the angular dependence of the resonance signal for optical pumping of the rubidium magnetometer
Author :
Caiping Zheng ; Chong Kang ; Yang Zhang ; Qingtao Wang ; Lei Cheng ; Yuefang Yang ; Jiajie Liu
Author_Institution :
Coll. of Sci., Harbin Eng. Univ., Harbin, China
fDate :
July 28 2010-Aug. 1 2010
Abstract :
In this paper, the resonance signal of the rubidium optical pumping magnetometer was studied. The theory is based on the quantum physics and atomic physics. Through establishing the relation between the magnetic sub-level rate equations and the light intensity, the angular dependence of the resonance signal was discussed. When θ=0° the resonance signal is maximum, when θ=90° the signal strength becomes zero, and the equipment won´t work. Through the simulated curves, the relationship between the resonance signal and the relaxation time as well as the density of rubidium vapor has also been done. This research provides a theoretical basis to solve the key technology of posture correction. As the rubidium vapour magnetometer measures the underwater geomagnetic field, it also plays a vital role for improving the accuracy of the instrument.
Keywords :
magnetic field measurement; magneto-optical devices; magnetometers; optical pumping; optical resonators; rubidium; Rb; angular dependent resonance signal; atomic physics; magnetic sublevel rate equations; quantum physics; relaxation time; rubidium optical pumping magnetometer; rubidium vapour magnetometer; underwater geomagnetic field; Atomic measurements; Magnetic field measurement; Magnetic fields; Magnetic resonance; Magnetometers; Optical pumping; Saturation magnetization; angular dependence; magnetic sub-level; posture correction; relaxation time;
Conference_Titel :
Laser Physics and Laser Technologies (RCSLPLT) and 2010 Academic Symposium on Optoelectronics Technology (ASOT), 2010 10th Russian-Chinese Symposium on
Conference_Location :
Harbin
Print_ISBN :
978-1-4244-5511-9
DOI :
10.1109/RCSLPLT.2010.5615356