English

Scintillation-only Based Pulse Shape Discrimination for Nuclear and Electron Recoils in Liquid Xenon

Instrumentation and Detectors 2015-05-28 v1 High Energy Physics - Experiment Nuclear Experiment

Abstract

In a dedicated test setup at the Kamioka Observatory we studied pulse shape discrimination (PSD) in liquid xenon (LXe) for dark matter searches. PSD in LXe was based on the observation that scintillation light from electron events was emitted over a longer period of time than that of nuclear recoil events, and our method used a simple ratio of early to total scintillation light emission in a single scintillation event. Requiring an efficiency of 50% for nuclear recoil retention we reduced the electron background to 7.7\pm1.1(stat)\pm1.2 0.6(sys)\times10-2 at energies between 4.8 and 7.2 keVee and to 7.7\pm2.8(stat)\pm2.5 2.8(sys)\times10-3 at energies between 9.6 and 12 keVee for a scintillation light yield of 20.9 p.e./keV. Further study was done by masking some of that light to reduce this yield to 4.6 p.e./keV, the same method results in an electron event reduction of 2.4\pm0.2(stat)\pm0.3 0.2(sys)\times10-1 for the lower of the energy regions above. We also observe that in contrast to nuclear recoils the fluctuations in our early to total ratio for electron events are larger than expected from statistical fluctuations.

Keywords

Cite

@article{arxiv.1106.2209,
  title  = {Scintillation-only Based Pulse Shape Discrimination for Nuclear and Electron Recoils in Liquid Xenon},
  author = {K. Ueshima and K. Abe and K. Hiraide and S. Hirano and Y. Kishimoto and K. Kobayashi and Y. Koshio and J. Liu and K. Martens and S. Moriyama and M. Nakahata and H. Nishiie and H. Ogawa and H. Sekiya and A. Shinozaki and Y. Suzuki and A. Takeda and M. Yamashita and K. Fujii and I. Murayama and S. Nakamura and K. Otsuka and Y. Takeuchi and Y. Fukuda and K. Nishijima and D. Motoki and Y. Itow and K. Masuda and Y. Nishitani and H. Uchida and S. Tasaka and H. Ohsumi and Y. D. Kim and Y. H. Kim and K. B. Lee and M. K. Lee and J. S. Lee the XMASS Collaboration},
  journal= {arXiv preprint arXiv:1106.2209},
  year   = {2015}
}

Comments

25 pages, 15 figures