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Search for topological defect of axionlike model with cesium atomic comagnetometer

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【作者】 杨雨成吴腾张建玮郭弘

【Author】 Yucheng Yang;Teng Wu;Jianwei Zhang;Hong Guo;State Key Laboratory of Advanced Optical Communication Systems and Networks, Department of Electronics,and Center for Quantum Information Technology, Peking University;School of Physics, Peking University;

【通讯作者】 吴腾;郭弘;

【机构】 State Key Laboratory of Advanced Optical Communication Systems and Networks, Department of Electronics,and Center for Quantum Information Technology, Peking UniversitySchool of Physics, Peking University

【摘要】 Many terrestrial experiments have been designed to detect domain walls composed of axions or axionlike particles(ALPs), which are promising candidates of dark matter. When the domain wall crosses over the Earth, the pseudoscalar field of ALPs could couple to the atomic spins. Such exotic spin-dependent couplings can be searched for by monitoring the transient-in-time change of the atomic spin precession frequency in the presence of a magnetic field. We propose here a single-species cesium atomic comagnetometer, which measures the spin precession frequencies of atoms in different ground-state hyperfine levels, to eliminate the common-mode magnetic-field variations and search for the exotic nonmagnetic couplings solely between protons and ALPs. With the single-species atomic comagnetometer, we experimentally rule out the possibility that the decay constant of the linear pseudoscalar couplings of ALPs to protons is f_p■ 3.71 ×10~7 Ge V. The advanced system has the potential to constrain the constant to be f_p■ 10.7 × 10~9 Ge V, promising to improve astrophysical constraint level by at least one order of magnitude. Our system could provide a sensitive detection method for the global network of optical magnetometers to search for exotic physics.

【Abstract】 Many terrestrial experiments have been designed to detect domain walls composed of axions or axionlike particles(ALPs), which are promising candidates of dark matter. When the domain wall crosses over the Earth, the pseudoscalar field of ALPs could couple to the atomic spins. Such exotic spin-dependent couplings can be searched for by monitoring the transient-in-time change of the atomic spin precession frequency in the presence of a magnetic field. We propose here a single-species cesium atomic comagnetometer, which measures the spin precession frequencies of atoms in different ground-state hyperfine levels, to eliminate the common-mode magnetic-field variations and search for the exotic nonmagnetic couplings solely between protons and ALPs. With the single-species atomic comagnetometer, we experimentally rule out the possibility that the decay constant of the linear pseudoscalar couplings of ALPs to protons is f_p■ 3.71 ×10~7 Ge V. The advanced system has the potential to constrain the constant to be f_p■ 10.7 × 10~9 Ge V, promising to improve astrophysical constraint level by at least one order of magnitude. Our system could provide a sensitive detection method for the global network of optical magnetometers to search for exotic physics.

【基金】 Project supported by the National Natural Science Foundation of China (Grant No. 62071012);the National Science Fund for Distinguished Young Scholars of China (Grant No. 61225003);National Hi-Tech Research and Development Program of China
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2021年05期
  • 【分类号】TH763.1
  • 【下载频次】15
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