Wang Helin, Wang Kainan, Xu Yunpeng, Tang Yituo, Wu Bin, Cheng Bing, Wu Leyuan, Zhou Yin, Weng Kanxing, Zhu Dong, Chen Peijun, Zhang Kaijun, Lin Qiang
Zhejiang Provincial Key Laboratory of Quantum Precision Measurement, College of Science, Zhejiang University of Technology, Hangzhou 310023, China.
Sensors (Basel). 2022 Aug 18;22(16):6172. doi: 10.3390/s22166172.
The cold atom gravimeter (CAG) has proven to be a powerful quantum sensor for the high-precision measurement of gravity field, which can work stably for a long time in the laboratory. However, most CAGs cannot operate in the field due to their complex structure, large volume and poor environmental adaptability. In this paper, a home-made, miniaturized CAG is developed and a truck-borne system based on it is integrated to measure the absolute gravity in the field. The measurement performance of this system is evaluated by applying it to measurements of the gravity field around the Xianlin reservoir in Hangzhou City of China. The internal and external coincidence accuracies of this measurement system were demonstrated to be 35.4 μGal and 76.7 μGal, respectively. Furthermore, the theoretical values of the measured eight points are calculated by using a forward modeling of a local high-resolution digital elevation model, and the calculated values are found to be in good agreement with the measured values. The results of this paper show that this home-made, truck-borne CAG system is reliable, and it is expected to improve the efficiency of gravity surveying in the field.
冷原子重力仪(CAG)已被证明是一种用于高精度测量重力场的强大量子传感器,它可以在实验室中长时间稳定工作。然而,由于其结构复杂、体积大且环境适应性差,大多数冷原子重力仪无法在野外作业。本文研制了一种国产小型化冷原子重力仪,并集成了基于该重力仪的车载系统,用于野外绝对重力测量。通过将该系统应用于中国杭州市仙林水库周边重力场测量,对其测量性能进行了评估。该测量系统的内部和外部符合精度分别为35.4微伽和76.7微伽。此外,利用局部高分辨率数字高程模型的正演模拟计算了测量的八个点的理论值,发现计算值与测量值吻合良好。本文结果表明,这种国产车载冷原子重力仪系统是可靠的,有望提高野外重力测量的效率。