Study on Digital Demodulation Technology of All-Optical Cesium Optically Pumped Magnetometer

Zhen-xin Yu
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Abstract

With the development of science and technology, the digital drive signal generated by the CNC oscillator is turned into an analogue signal to drive the magnetic sensor through a digital to analogue converter, and the output signal from the CNC oscillator to a digital phase amplifier. This process allows the digital demodulation technique to be deeply optimised. Caesium light pump magnetometer is a high precision, high sensitivity weak magnetic field measurement instrument based on the Saiman effect of Caesium atoms in a magnetic field, then combined with light pumping action and magnetic resonance technology. Currently, the digitalisation of the signal detection system of the domestic cesium light pump magnetometer is low and there is a considerable gap with foreign products. This paper discusses the application of the model in the digital demodulation of the all-optical cesium light pump magnetometer based on the all-optical cesium light cluster demodulation technology. The output of the CNC oscillator, the amplitude-frequency response of the low-pass filter circuit and the frequency accuracy of the driving signal in the digital signal generator are tested experimentally, and the waveforms of the collected signals in the digital lock-in amplifier and the accuracy of the phase measurement and amplitude measurement are tested for the readers' reference.
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全光铯光泵浦磁强计数字解调技术研究
随着科学技术的发展,将数控振荡器产生的数字驱动信号通过数模转换器转换成模拟信号驱动磁传感器,并将输出信号从数控振荡器输送到数字相位放大器。这个过程使数字解调技术得到深度优化。铯光泵磁力仪是基于铯原子在磁场中的塞曼效应,再结合光泵作用和磁共振技术研制的高精度、高灵敏度弱磁场测量仪器。目前,国产铯光泵磁力仪信号检测系统的数字化程度较低,与国外产品有相当大的差距。本文讨论了该模型在基于全光铯光团解调技术的全光铯光泵浦磁强计数字解调中的应用。实验测试了数控振荡器的输出、低通滤波电路的幅频响应和数字信号发生器中驱动信号的频率精度,并测试了数字锁相放大器中采集信号的波形以及相位测量和幅度测量的精度,以供读者参考。
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