Dark Matter "Collider" from Inelastic Boosted Dark Matter

Physical Review Letters
Doojin KimSeodong Shin

Abstract

We propose a novel dark matter (DM) detection strategy for models with a nonminimal dark sector. The main ingredients in the underlying DM scenario are a boosted DM particle and a heavier dark sector state. The relativistic DM impinged on target material scatters off inelastically to the heavier state, which subsequently decays into DM along with lighter states including visible (standard model) particles. The expected signal event, therefore, accompanies a visible signature by the secondary cascade process associated with a recoiling of the target particle, differing from the typical neutrino signal not involving the secondary signature. We then discuss various kinematic features followed by DM detection prospects at large-volume neutrino detectors with a model framework where a dark gauge boson is the mediator between the standard model particles and DM.

References

May 21, 2005·Physical Review Letters·I A QattanB Zeidman
Jan 21, 2017·Physical Review Letters·D BanerjeeUNKNOWN NA64 Collaboration

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Citations

Dec 9, 2017·Physical Review Letters·Pilar ColomaIan M Shoemaker
Jun 16, 2018·Physical Review Letters·C KachulisUNKNOWN Super-Kamiokande Collaboration
May 31, 2019·Physical Review Letters·Yohei EmaRyosuke Sato
Apr 24, 2019·Physical Review Letters·C HaUNKNOWN COSINE-100 Collaboration
Jun 17, 2020·Reports on Progress in Physics·Yanou CuiPedro A N Machado

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