Non-perturbative electroweak-scalegenesis on the test bench of dark matter detection
arXiv:1712.06324 · doi:10.1140/epjc/s10052-018-5713-4
Abstract
We revisit a recently proposed scale invariant extension of the standard model, in which the scalar bi-linear condensate in a strongly interacting hidden sector dynamically breaks scale symmetry, thereby triggering electroweak symmetry breaking. Relaxing the previously made assumption on flavor symmetry we find that the presence of the would-be dark matter candidate opens a new annihilation process of dark matter at finite temperature, such that the model can satisfy stringent constraints of the future experiments of the dark matter direct detection.
20 pages, 3 figures; Version published in EPJC
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- Scalegenesis and fermionic dark matters in the flatland scenario
- Scale and confinement phase transitions in scale invariant scalar gauge theory
- Enhanced diHiggs signal from hidden scalar QCD at leading-order scale-symmetry limit