Detectability of galactic supernova neutrinos coherently scattered on xenon nuclei in XMASS
arXiv:1604.01218 · doi:10.1016/j.astropartphys.2017.01.006
Abstract
The coherent elastic neutrino-nucleus scattering (CEvNS) plays a crucial role at the final evolution of stars. The detection of it would be of importance in astroparticle physics. Among all available neutrino sources, galactic supernovae give the highest neutrino flux in the MeV range. Among all liquid xenon dark matter experiments, XMASS has the largest sensitive volume and light yield. The possibility to detect galactic supernova via the CEvNS-process on xenon nuclei in the current XMASS detector was investigated. The total number of events integrated in about 18 seconds after the explosion of a supernova 10~kpc away from the Earth was expected to be from 3.5 to 21.1, depending on the supernova model used to predict the neutrino flux, while the number of background events in the same time window was measured to be negligible. All lead to very high possibility to detect CEvNS experimentally for the first time utilizing the combination of galactic supernovae and the XMASS detector. In case of a supernova explosion as close as Betelgeuse, the total observable events can be more than ten thousand, making it possible to distinguish different supernova models by examining the evolution of neutrino event rate in XMASS.
6 pages, 5 figures
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- Astrophysical constraints on non-standard coherent neutrino-nucleus scattering
- Pre-Supernova Neutrinos in Large Dark Matter Direct Detection Experiments
- Theoretical prediction of presupernova neutrinos and their detection
- Kiloton-scale xenon detectors for neutrinoless double beta decay and other new physics searches
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- Neutrinos from Type Ia and failed core-collapse supernovae at dark matter detectors
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- Detecting supernova neutrinos with iron and lead detectors
- Direct dark matter searches with the full data set of XMASS-I
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- Exploring the Origin of Supermassive Black Holes with Coherent Neutrino Scattering
- Oscillation-Independent Probes of Neutrino Non-Standard Interactions from Supernovae