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Exploring Composite Dark Matter with an SU(4) gauge theory with 1 fermion flavor
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Several SU(N) gauge theories have been explored as candidates for producing stable dark matter particles that can explain their relative abundance, while also evading current constraints from direct, indirect and collider searches. In this talk, I will present the confinement and spectral properties of a new model we name "Hyper Stealth Dark Matter", which involves an SU(4) gauge theory with 1 quark flavor. The lightest baryon in this theory can be a potential dark matter candidate as it is protected from decay and hence can evade detection with a mass of just a few GeV. Existence of a first order confinement transition would open the possibility of potential detection of gravitational waves from such a transition at future observatories.
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Cited by 1 Pith paper
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Finite Temperature Transition in Hyper Stealth Dark Matter using M\"{o}bius Domain Wall Fermions
A first-order confinement transition is observed at am=0.4 in the one-flavor SU(4) Hyper Stealth Dark Matter theory.
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