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Systematic error suppression scheme of the weak equivalence principle test by dual atom interferometers in space based on spectral correlation

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【作者】 胡建功陈曦王立勇廖庆洪汪庆年

【Author】 Jian-Gong Hu;Xi Chen;Li-Yong Wang;Qing-Hong Liao;Qing-Nian Wang;School of Information Engineering, Nanchang University;State Key Laboratory of Magnetic Resonance and Atomic and Molecular Physics, Wuhan Institute of Physics and Mathematics;Center for Cold Atom Physics, Chinese Academy of Sciences;Center for Optics Research and Engineering, Shandong University;School of Information Science and Engineering, Shandong University;

【通讯作者】 胡建功;

【机构】 School of Information Engineering, Nanchang UniversityState Key Laboratory of Magnetic Resonance and Atomic and Molecular Physics, Wuhan Institute of Physics and MathematicsCenter for Cold Atom Physics, Chinese Academy of SciencesCenter for Optics Research and Engineering, Shandong UniversitySchool of Information Science and Engineering, Shandong University

【摘要】 Systematic error suppression and test data processing are very important in improving the accuracy and sensitivity of the atom interferometer(AI)-based weak-equivalence-principle(WEP) test in space. Here we present a spectrum correlation method to investigate the test data of the AI-based WEP test in space by analyzing the characteristics of systematic errors and noises. The power spectrum of the E?tv?s coefficient η, systematic errors, and noises in AI-based WEP test in space are analyzed and calculated in detail. By using the method, the WEP violation signal is modulated from direct current(DC) frequency band to alternating current(AC) frequency band. We find that the signal can be effectively extracted and the influence of systematic errors can be greatly suppressed by analyzing the power spectrum of the test data when the spacecraft is in an inertial pointing mode. Furthermore, the relation between the E?tv?s coefficient η and the number of measurements is obtained under certain simulated parameters. This method will be useful for both isotopic and nonisotopic AI-based WEP tests in space.

【Abstract】 Systematic error suppression and test data processing are very important in improving the accuracy and sensitivity of the atom interferometer(AI)-based weak-equivalence-principle(WEP) test in space. Here we present a spectrum correlation method to investigate the test data of the AI-based WEP test in space by analyzing the characteristics of systematic errors and noises. The power spectrum of the E?tv?s coefficient η, systematic errors, and noises in AI-based WEP test in space are analyzed and calculated in detail. By using the method, the WEP violation signal is modulated from direct current(DC) frequency band to alternating current(AC) frequency band. We find that the signal can be effectively extracted and the influence of systematic errors can be greatly suppressed by analyzing the power spectrum of the test data when the spacecraft is in an inertial pointing mode. Furthermore, the relation between the E?tv?s coefficient η and the number of measurements is obtained under certain simulated parameters. This method will be useful for both isotopic and nonisotopic AI-based WEP tests in space.

【基金】 Project supported by the National Natural Science Foundation of China (Grants No. 11947057);the Foundation for Distinguished Young Scientist of Jiangxi Province, China (Grant No. 2016BCB23009);the Postdoctoral Applied Research Program of Qingdao City, Shandong Province, China (Grant No. 62350079311135)
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2020年11期
  • 【分类号】TH744.3
  • 【下载频次】22
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