Majorana dark matter in a classically scale invariant model
arXiv:1409.5776 · doi:10.1007/JHEP01(2015)143
Abstract
We analyze a classically scale invariant extension of the Standard Model with dark gauge broken by doubly charge scalar leaving a remnant symmetry. Dark fermions are introduced as dark matter candidates and for anomaly reasons we introduce two chiral fermions. Due to classical scale invariance, bare mass term that would mix these two states is absent and they end up as stable Majorana fermions and . We calculate cross sections for , and annihilation channels. We put constraints to the model from the Higgs searches at the LHC, dark matter relic abundance and dark matter direct detection limits by LUX. The dark gauge boson plays a crucial role in the Coleman-Weinberg mechanism and has to be heavier then 680 GeV. The viable mass region for dark matter is from 470 GeV up to a few TeV. In the case when two Majorana fermions have different masses, two dark matter signals at direct detection experiments could provide a distinctive signature of this model.
new references added, minor changes in text, matches the published version
References in corpus (22)
- Observation of a new particle in the search for the Standard Model Higgs boson with the ATLAS detector at the LHC
- Observation of a new boson at a mass of 125 GeV with the CMS experiment at the LHC
- Conformal Symmetry and the Standard Model
- Novel Effects in Electroweak Breaking from a Hidden Sector
- Electroweak Symmetry Breaking induced by Dark Matter
- Scale invariant extension of the standard model with strongly interacting hidden sector
- Electroweak Higgs as a pseudo-Goldstone boson of broken scale invariance
- Shadow Higgs from a scale-invariant hidden model
- Dark matter and a new gauge boson through kinetic mixing
- The Minimal Scale Invariant Extension of the Standard Model
- The windows for kinetically mixed Z'-mediated dark matter and the galactic center gamma ray excess
- Embedding inflation into the Standard Model - more evidence for classical scale invariance
- Right-Handed Neutrinos as the Origin of the Electroweak Scale
- Light Dark Matter, Naturalness, and the Radiative Origin of the Electroweak Scale
- Neutrino Masses and Conformal Electro-Weak Symmetry Breaking
- Higgs Partner Searches and Dark Matter Phenomenology in a Classically Scale Invariant Higgs Boson Sector
- Ultra-weak sector, Higgs boson mass, and the dilaton
- An ultra-weak sector, the strong CP problem and the pseudo-Goldstone dilaton
- Strongly First-Order Electroweak Phase Transition and Classical Scale Invariance
- Gamma-ray Line from Nambu-Goldstone Dark Matter in a Scale Invariant Extension of the Standard Model
- Indirect Detection of WIMP Dark Matter: a compact review
- Comments on the Hierarchy Problem in Effective Theories
Cited by in corpus (6)
- Dark Matter from a Classically Scale-Invariant
- The Inverse Seesaw in Conformal Electro-Weak Symmetry Breaking and Phenomenological Consequences
- Nambu-Goldstone Dark Matter in a Scale Invariant Bright Hidden Sector
- Conformal vector dark matter and strongly first-order electroweak phase transition
- Scale genesis and gravitational wave in a classically scale invariant extension of the standard model
- Dark matter properties implied by gamma ray interstellar emission models