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Can sub-GeV dark matter coherently scatter on the electrons in the atom?
作者姓名:Ji-Heng Guo  Yu-Xuan Sun  Wenyu Wang  Ke-Yun Wu
作者单位:Faculty of Science, Beijing University of Technology
基金项目:supported by the Natural Science Foundation of China under Grant number 11775012;
摘    要:A novel detection of sub-GeV dark matter is proposed in the paper.The electron cloud is boosted by the dark matter and emits an electron when it is dragged back by the heavy nucleus,namely the coherent scattering of the electron cloud of the atom.The survey in the x-ray diffraction shows that the atomic form factors are much more complex than the naive consideration.The results of the relativistic Hartree-Fock(RHF) method give non-trivial shapes of the atoms.The detailed calculation of the recoi...

收稿时间:2022-08-24

Can sub-GeV dark matter coherently scatter on the electrons in the atom?
Ji-Heng Guo,Yu-Xuan Sun,Wenyu Wang,Ke-Yun Wu.Can sub-GeV dark matter coherently scatter on the electrons in the atom?[J].Communications in Theoretical Physics,2023,75(1):15201-85.
Authors:Ji-Heng Guo  Yu-Xuan Sun  Wenyu Wang  Ke-Yun Wu
Institution:Faculty of Science, Beijing University of Technology, Beijing, China
Abstract:A novel detection of sub-GeV dark matter is proposed in the paper. The electron cloud is boosted by the dark matter and emits an electron when it is dragged back by the heavy nucleus, namely the coherent scattering of the electron cloud of the atom. The survey in the x-ray diffraction shows that the atomic form factors are much more complex than the naive consideration. The results of the relativistic Hartree–Fock (RHF) method give non-trivial shapes of the atoms. The detailed calculation of the recoil of the electron cloud, the kinetics, the fiducial cross section and the corresponding calculation of detection rate are given analytically. The numerical results show that the limits of the RHF form factors are much more stringent than the recoil of a single electron, almost 4 orders stronger, and also give tight limitations compared to the Migdal effect below about several hundred MeV. The physical picture and the corresponding results are promising and need further exploration.
Keywords:dark matter  coherent scattering  form factor  
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