Atmospheric neutrinos in next-generation xenon and argon dark matter experiments

被引:13
|
作者
Newstead, Jayden L. [1 ,2 ,3 ]
Lang, Rafael F. [2 ]
Strigari, Louis E. [4 ]
机构
[1] Arizona State Univ, Dept Phys, Tempe, AZ 85287 USA
[2] Purdue Univ, Dept Phys & Astron, W Lafayette, IN 47907 USA
[3] Univ Melbourne, Sch Phys, Melbourne, Vic 3010, Australia
[4] Texas A&M Univ, Mitchell Inst Fundamental Phys & Astron, Dept Phys & Astron, College Stn, TX 77845 USA
基金
澳大利亚研究理事会;
关键词
D O I
10.1103/PhysRevD.104.115022
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
We study the sensitivity of future xenon- and argon-based dark matter and neutrino detection experiments to low-energy atmospheric neutrinos. Not accounting for experimental backgrounds, the primary obstacle for identifying nuclear recoils induced by atmospheric neutrinos in xenon is the tail of the electron recoil distribution due to pp solar neutrinos. We use the NEST code to model the solar and atmospheric neutrino signals in a xenon detector and find that an exposure of 700 tonne-years will produce a 5 sigma detection of atmospheric neutrinos. We explore the effect of different detector properties and find that a sufficiently long electron lifetime is essential to the success of such a measurement.
引用
收藏
页数:8
相关论文
共 50 条
  • [21] Massive neutrinos as dark matter?? An overview of experiments.
    Wong, HTK
    COSMIC MICROWAVE BACKGROUND AND LARGE SCALE STRUCTURE OF THE UNIVERSE, 1998, 151 : 129 - 135
  • [22] Liquids xenon and argon, dark matter detectors with background rejection
    Davies, GJ
    NUOVO CIMENTO DELLA SOCIETA ITALIANA DI FISICA B-GENERAL PHYSICS RELATIVITY ASTRONOMY AND MATHEMATICAL PHYSICS AND METHODS, 1997, 112 (11): : 1455 - 1477
  • [23] A NEXT-GENERATION CAVITY MICROWAVE EXPERIMENT TO SEARCH FOR DARK-MATTER AXIONS
    VANBIBBER, K
    STOFFL, W
    ANTHONY, PL
    SIKIVIE, P
    SULLIVAN, NS
    TANNER, DB
    ZELEZNY, V
    GOLUBEV, NA
    KAZACHENKO, OV
    KRAVCHUK, LV
    KUZMIN, V
    ROMANOV, GV
    SEKACHEV, IV
    ROSENBERG, LJ
    HAGMANN, C
    MOLTZ, DM
    NEZRICK, F
    TURNER, MS
    VILLA, F
    INTERNATIONAL JOURNAL OF MODERN PHYSICS D, 1994, 3 : 33 - 42
  • [24] Next-generation nucleon decay experiments
    Nakaya, T
    NUCLEAR PHYSICS B-PROCEEDINGS SUPPLEMENTS, 2005, 138 : 376 - 382
  • [25] Prediction of underground argon content for dark matter experiments
    Mei, D-M.
    Yin, Z-B.
    Spaans, J.
    Koppang, M.
    Hime, A.
    Keller, C.
    Gehman, V. M.
    PHYSICAL REVIEW C, 2010, 81 (05):
  • [26] Sensitivity of next-generation tritium beta-decay experiments for keV-scale sterile neutrinos
    Mertens, S.
    Lasserre, T.
    Groh, S.
    Drexlin, G.
    Glueck, F.
    Huber, A.
    Poon, A. W. P.
    Steidl, M.
    Steinbrink, N.
    Weinheimer, C.
    JOURNAL OF COSMOLOGY AND ASTROPARTICLE PHYSICS, 2015, (02):
  • [27] Projected sensitivity to sub-GeV dark matter of next-generation semiconductor detectors
    Andersson, Erik
    Bokmark, Alex
    Catena, Riccardo
    Emken, Timon
    Moberg, Henrik Klein
    Astrand, Emil
    JOURNAL OF COSMOLOGY AND ASTROPARTICLE PHYSICS, 2020, (05):
  • [28] Presupernova neutrinos in large dark matter direct detection experiments
    Raj, Nirmal
    Takhistov, Volodymyr
    Witte, Samuel J.
    PHYSICAL REVIEW D, 2020, 101 (04)
  • [29] Atmospheric dark matter and XENON1T excess
    Su, Liangliang
    Wang, Wenyu
    Wu, Lei
    Yang, Jin Min
    Zhu, Bin
    PHYSICAL REVIEW D, 2020, 102 (11)
  • [30] Implication of neutrino backgrounds on the reach of next generation dark matter direct detection experiments
    Billard, J.
    Figueroa-Feliciano, E.
    Strigari, L.
    PHYSICAL REVIEW D, 2014, 89 (02):