English

Re-examining the Solar Axion Explanation for the XENON1T Excess

High Energy Physics - Phenomenology 2020-12-25 v4 High Energy Physics - Experiment

Abstract

The XENON1T collaboration has observed an excess in electronic recoil events below 5 keV5~\mathrm{keV} over the known background, which could originate from beyond-the-Standard-Model physics. The solar axion is a well-motivated model that has been proposed to explain the excess, though it has tension with astrophysical observations. The axions traveled from the Sun can be absorbed by the electrons in the xenon atoms via the axion-electron coupling. Meanwhile, they can also scatter with the atoms through the inverse Primakoff process via the axion-photon coupling, which emits a photon and mimics the electronic recoil signals. We found that the latter process cannot be neglected. After including the keV\rm{keV} photon produced via inverse Primakoff in the detection, the tension with the astrophysical constraints can be significantly reduced. We also explore scenarios involving additional new physics to further alleviate the tension with the astrophysical bounds.

Keywords

Cite

@article{arxiv.2006.14598,
  title  = {Re-examining the Solar Axion Explanation for the XENON1T Excess},
  author = {Christina Gao and Jia Liu and Lian-Tao Wang and Xiao-Ping Wang and Wei Xue and Yi-Ming Zhong},
  journal= {arXiv preprint arXiv:2006.14598},
  year   = {2020}
}

Comments

8 pages, 4 figures; v2: new physics discussion improved; v3: version accepted for publication in PRL; v4: screening length revised