Measurement of the scintillation time spectra and pulse-shape discrimination of low-energy beta and nuclear recoils in liquid argon with DEAP-1
arXiv:0904.2930 · doi:10.1016/j.astropartphys.2016.09.002
Abstract
The DEAP-1 low-background liquid argon detector was used to measure scintillation pulse shapes of electron and nuclear recoil events and to demonstrate the feasibility of pulse-shape discrimination (PSD) down to an electron-equivalent energy of 20 keV. In the surface dataset using a triple-coincidence tag we found the fraction of beta events that are misidentified as nuclear recoils to be (90% C.L.) for energies between 43-86 keVee and for a nuclear recoil acceptance of at least 90%, with 4% systematic uncertainty on the absolute energy scale. The discrimination measurement on surface was limited by nuclear recoils induced by cosmic-ray generated neutrons. This was improved by moving the detector to the SNOLAB underground laboratory, where the reduced background rate allowed the same measurement with only a double-coincidence tag. The combined data set contains events. One of those, in the underground data set, is in the nuclear-recoil region of interest. Taking into account the expected background of 0.48 events coming from random pileup, the resulting upper limit on the electronic recoil contamination is (90% C.L.) between 44-89 keVee and for a nuclear recoil acceptance of at least 90%, with 6% systematic uncertainty on the absolute energy scale. We developed a general mathematical framework to describe PSD parameter distributions and used it to build an analytical model of the distributions observed in DEAP-1. Using this model, we project a misidentification fraction of approx. for an electron-equivalent energy threshold of 15 keV for a detector with 8 PE/keVee light yield. This reduction enables a search for spin-independent scattering of WIMPs from 1000 kg of liquid argon with a WIMP-nucleon cross-section sensitivity of cm, assuming negligible contribution from nuclear recoil backgrounds.
Accepted for publication in Astroparticle Physics
References in corpus (16)
- Dark Matter Results from 225 Live Days of XENON100 Data
- Improved Limits on Scattering of Weakly Interacting Massive Particles from Reanalysis of 2013 LUX data
- First Results from the DarkSide-50 Dark Matter Experiment at Laboratori Nazionali del Gran Sasso
- NEST: A Comprehensive Model for Scintillation Yield in Liquid Xenon
- First results from a Dark Matter search with liquid Argon at 87 K in the Gran Sasso Underground Laboratory
- Results from the first use of low radioactivity argon in a dark matter search
- Dark Matter Search Results from the PICO-60 CFI Bubble Chamber
- Measurement of the specific activity of Ar-39 in natural argon
- Measurement of Scintillation and Ionization Yield and Scintillation Pulse Shape from Nuclear Recoils in Liquid Argon
- DEAP-3600 Dark Matter Search at SNOLAB
- Low-mass dark matter search results from full exposure of PandaX-I experiment
- Measurement of scintillation efficiency for nuclear recoils in liquid argon
- Radon backgrounds in the DEAP-1 liquid-argon-based Dark Matter detector
- Improving Photoelectron Counting and Particle Identification in Scintillation Detectors with Bayesian Techniques
- Scintillation efficiency of liquid argon in low energy neutron-argon scattering
- Study of nuclear recoils in liquid argon with monoenergetic neutrons
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- Search for dark matter with a 231-day exposure of liquid argon using DEAP-3600 at SNOLAB
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- DEAP-3600 Dark Matter Search at SNOLAB
- Annual Modulation in Direct Dark Matter Searches
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- Introduction to dark matter experiments
- Constraints on dark matter-nucleon effective couplings in the presence of kinematically distinct halo substructures using the DEAP-3600 detector
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