Revisiting XENON100's Constraints (and Signals?) For Low-Mass Dark Matter
arXiv:1306.1790 · doi:10.1088/1475-7516/2013/09/035
Abstract
Although observations made with the CoGeNT and CDMS experiments have been interpreted as possible signals of low-mass (~7-10 GeV) dark matter particles, constraints from the XENON100 collaboration appear to be incompatible with this hypothesis, at least at face value. In this paper, we revisit XENON100's constraint on dark matter in this mass range, and consider how various uncertainties and assumptions made might alter this conclusion. We also note that while XENON100's two nuclear recoil candidates each exhibit very low ratios of ionization-to-scintillation signals, making them difficult to attribute to known electronic or neutron backgrounds, they are consistent with originating from dark matter particles in the mass range favored by CoGeNT and CDMS. We argue that with lower, but not implausible, values for the relative scintillation efficiency of liquid xenon (L_eff), and the suppression of the scintillation signal in liquid xenon at XENON100's electric field (S_nr), these two events could consistently arise from dark matter particles with a mass and cross section in the range favored by CoGeNT and CDMS. If this interpretation is correct, we predict that the LUX experiment, with a significantly higher light yield than XENON100, should observe dark matter induced events at an observable rate of ~3-24 per month.
11 pages, 6 figures
References in corpus (18)
- Dark Matter Results from 225 Live Days of XENON100 Data
- New results from DAMA/LIBRA
- Results from a Search for Light-Mass Dark Matter with a P-type Point Contact Germanium Detector
- The RAVE Survey: Constraining the Local Galactic Escape Speed
- Results from a Low-Energy Analysis of the CDMS II Germanium Data
- First Dark Matter Results from the XENON100 Experiment
- The Large Underground Xenon (LUX) Experiment
- The Astrophysical Uncertainties Of Dark Matter Direct Detection Experiments
- Simultaneous Measurement of Ionization and Scintillation from Nuclear Recoils in Liquid Xenon as Target for a Dark Matter Experiment
- Annual Modulation of Dark Matter in the Presence of Streams
- The Dark Matter at the End of the Galaxy
- Dependence of direct detection signals on the WIMP velocity distribution
- Nuclear recoil energy scale in liquid xenon with application to the direct detection of dark matter
- Limits on the spin-dependent WIMP-nucleon cross-sections from the first science run of the ZEPLIN-III experiment
- Technical Results from the Surface Run of the LUX Dark Matter Experiment
- Dark Matter Direct Search Rates in Simulations of the Milky Way and Sagittarius Stream
- Surface roughness interpretation of 730 kg days CRESST-II results
- Importance of upgraded energy reconstruction for direct dark matter searches with liquid xenon detectors
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- Small scale clustering of late forming dark matter
- On the sbottom resonance in dark matter scattering
- Higher Dimensional Effective Operators for Direct Dark Matter Detection
- The effects of the small-scale behaviour of dark matter power spectrum on CMB spectral distortion
- Stellar convective cores as dark matter probes
- Static structure of chameleon dark Matter as an explanation of dwarf spheroidal galactic core
- Study of a WIMP dark matter model with the updated results of CDMS II