Quenching Factor consistency across several NaI(Tl) crystals
arXiv:2111.09590 · doi:10.1088/1742-6596/2156/1/012065
Abstract
Testing the DAMA/LIBRA annual modulation result independently of dark matter particle and halo models has been a challenge for twenty years. Using the same target material, NaI(Tl), is required and presently two experiments, ANAIS-112 and COSINE-100, are running for such a goal. A precise knowledge of the detector response to nuclear recoils is mandatory because this is the most likely channel to find the dark matter signal. The light produced by nuclear recoils is quenched with respect to that produced by electrons by a factor that has to be measured experimentally. However, current quenching factor measurements in NaI(Tl) crystals disagree within the energy region of interest for dark matter searches. To disentangle whether this discrepancy is due to intrinsic differences in the light response among different NaI(Tl) crystals, or has its origin in unaccounted for systematic effects will be key in the comparison among the different experiments. We present measurements of the quenching factors for five small NaI(Tl) crystals performed in the same experimental setup to control systematics. Quenching factor results are compatible between crystals and no clear dependence with energy is observed from 10 to 80 keVnr.
Proceeding of the TAUP 2021 Conference
References in corpus (4)
- First results on dark matter annual modulation from ANAIS-112 experiment
- An experiment to search for dark matter interactions using sodium iodide detectors
- Annual modulation results from three-year exposure of ANAIS-112
- Quenching factor measurements of sodium nuclear recoils in NaI:Tl determined by spectrum fitting
Cited by in corpus (6)
- Exploring coherent elastic neutrino-nucleus scattering using reactor electron antineutrinos in the NEON experiment
- Improving ANAIS-112 sensitivity to DAMA/LIBRA signal with machine learning techniques
- Sensitivities for coherent elastic scattering of solar and supernova neutrinos with future NaI(Tl) dark matter search detectors of COSINE-200/1T
- Particle discrimination in a NaI crystal using the COSINUS remote TES design
- Detection and Calibration of Low-Energy Nuclear Recoils for Dark Matter and Neutrino Scattering Experiments
- Influence of NaI background and mass on testing the DAMA modulation