Papers
Topics
Authors
Recent
Gemini 2.5 Flash
Gemini 2.5 Flash
120 tokens/sec
GPT-4o
10 tokens/sec
Gemini 2.5 Pro Pro
42 tokens/sec
o3 Pro
5 tokens/sec
GPT-4.1 Pro
3 tokens/sec
DeepSeek R1 via Azure Pro
51 tokens/sec
2000 character limit reached

Search for Cosmic-ray Boosted Sub-MeV Dark-Matter-Electron Scattering in PandaX-4T (2403.08361v2)

Published 13 Mar 2024 in hep-ex and hep-ph

Abstract: We report the first search for the elastic scatterings between cosmic-ray boosted sub-MeV dark matter and electrons in the PandaX-4T liquid xenon experiment. Sub-MeV dark matter particles can be accelerated by scattering with electrons in the cosmic rays and produce detectable electron recoil signals in the detector. Using the commissioning data from PandaX-4T of 0.63~tonne$\cdot$year exposure, we set new constraints on DM-electron scattering cross sections for DM masses ranging from 10~eV/$c2$ to 3~keV/$c2$.

Definition Search Book Streamline Icon: https://streamlinehq.com
References (27)
  1. G. Bertone and D. Hooper, Rev. Mod. Phys. 90, 045002 (2018).
  2. Y. Meng et al. (PandaX-4T), Phys. Rev. Lett. 127, 261802 (2021), arXiv:2107.13438 [hep-ex] .
  3. E. Aprile et al. (XENON), Phys. Rev. Lett. 131, 041003 (2023), arXiv:2303.14729 [hep-ex] .
  4. J. Aalbers et al. (LZ), Phys. Rev. Lett. 131, 041002 (2023), arXiv:2207.03764 [hep-ex] .
  5. S. Li et al. (PandaX), Phys. Rev. Lett. 130, 261001 (2023a), arXiv:2212.10067 [hep-ex] .
  6. I. Arnquist et al. (DAMIC-M), Phys. Rev. Lett. 130, 171003 (2023), arXiv:2302.02372 [hep-ex] .
  7. P. Adari et al. (SENSEI),   (2023), arXiv:2312.13342 [astro-ph.CO] .
  8. P. Agnes et al. (DarkSide), Phys. Rev. Lett. 130, 101002 (2023), arXiv:2207.11968 [hep-ex] .
  9. K. M. Zurek, Phys. Rept. 537, 91 (2014), arXiv:1308.0338 [hep-ph] .
  10. K. Petraki and R. R. Volkas, Int. J. Mod. Phys. A 28, 1330028 (2013), arXiv:1305.4939 [hep-ph] .
  11. T. Bringmann and M. Pospelov, Phys. Rev. Lett. 122, 171801 (2019).
  12. A. Guha and J.-C. Park,   (2024), arXiv:2401.07750 [hep-ph] .
  13. Z. Y. Zhang et al.,   (2023), arXiv:2309.14982 [hep-ex] .
  14. D. Zhang et al. (PandaX), Phys. Rev. Lett. 129, 161804 (2022), arXiv:2206.02339 [hep-ex] .
  15. X. Cui et al. (PandaX-II), Phys. Rev. Lett. 128, 171801 (2022), arXiv:2112.08957 [hep-ex] .
  16. Z. Guo et al. (JNE Collaboration), Chin. Phys. C 45, 025001 (2021).
  17. M. J. Boschini et al., Astrophys. J. 854, 94 (2018), arXiv:1801.04059 [astro-ph.HE] .
  18. T. Emken, “DarkART: Version 0.1.0,” Zenodo (2022).
  19. M. Szydagis et al., “Noble Element Simulation Technique (v2.2.1),”  (2021a).
  20. M. Szydagis et al., Instruments 5, 13 (2021b), arXiv:2102.10209 [hep-ex] .
  21. X. Yan et al.,   (2023), arXiv:2312.15632 [nucl-ex] .
  22. X. Lu et al.,   (2024), arXiv:2401.07045 [hep-ex] .
  23. E. G. Adelberger et al., Rev. Mod. Phys. 83, 195 (2011), arXiv:1004.2318 [nucl-ex] .
  24. L. Si et al. (PandaX), Research 2022, 9798721 (2022), arXiv:2205.12809 [nucl-ex] .
  25. E. Aprile et al. (XENON), Nature 568, 532 (2019), arXiv:1904.11002 [nucl-ex] .
  26. E. Aprile et al. (XENON), Phys. Rev. C 106, 024328 (2022), arXiv:2205.04158 [hep-ex] .
  27. D. F. Jackson Kimball and K. Van Bibber, The search for ultralight bosonic dark matter (Springer Nature, 2023).

Summary

We haven't generated a summary for this paper yet.

Dice Question Streamline Icon: https://streamlinehq.com

Follow-up Questions

We haven't generated follow-up questions for this paper yet.