Doubly Coexisting Dark Matter Candidates in an Extended Seesaw Model
arXiv:0807.0981 · doi:10.1016/j.physletb.2009.03.083 10.1016/j.physletb.2011.03.031
Abstract
We examine how a scenario of coexisting two-particle dark mater can be realized in the extended seesaw model, which we have proposed previously to accommodate small neutrino masses and low scale leptogenesis with an introduction of singlet Majorana neutrino and singlet scalar . We now impose the discrete symmetry and introduce new renormalizable interaction terms with a new heavy singlet scalar particle so as for previously introduced and to be doubly coexisting dark matter candidates. Depending on the mass spectrum of the two dark matter candidates, the annihilation process either or is of particular interest because the annihilation cross sections for the processes can be so large that the relic abundance of decaying particle should get lowered, which in turn makes the constraints on its parameter space relaxed, compared with the case of one and only one dark matter candidate. We discuss the implications of the dark matter detection through the scattering off the nucleus of the detecting material on our scenarios for dark matter candidates. We also study the implications for the search of invisible Higgs decay at LHC, which may serve as a probe of our scenario for dark matter.
modified to renormalizable model,
References in corpus (14)
- Particle Dark Matter: Evidence, Candidates and Constraints
- Gauge Singlet Scalars as Cold Dark Matter
- Dark Matter and Dark Energy
- LHC Phenomenology of an Extended Standard Model with a Real Scalar Singlet
- Limits on spin-independent WIMP-nucleon interactions from the two-tower run of the Cryogenic Dark Matter Search
- The New Minimal Standard Model
- Towards Closing the Window on Strongly Interacting Dark Matter: Far-Reaching Constraints from Earth's Heat Flow
- The minimal model of fermionic dark matter
- Sterile neutrinos as subdominant warm dark matter
- Extended double seesaw model for neutrino mass spectrum and low scale leptogenesis
- Singlet fermion dark matter and electroweak baryogenesis with radiative neutrino mass
- Low Scale Leptogenesis and Dark Matter Candidates in an Extended Seesaw Model
- Cosmic rays through the Higgs portal
- Self Interacting Dark Matter in the Solar System
Cited by in corpus (23)
- (In)direct Detection of Boosted Dark Matter
- Dynamical Dark Matter: II. An Explicit Model
- Dark Matter Particle Spectroscopy at the LHC: Generalizing MT2 to Asymmetric Event Topologies
- Multi-Component Dark Matter Systems and Their Observation Prospects
- Dark Discrete Gauge Symmetries
- Multicomponent Dark Matter in Supersymmetric Hidden Sector Extensions
- Detecting Boosted Dark Matter from the Sun with Large Volume Neutrino Detectors
- Can we discover dual-component thermal WIMP dark matter?
- Search for Boosted Dark Matter Interacting With Electrons in Super-Kamiokande
- Overcoming Velocity Suppression in Dark-Matter Direct-Detection Experiments
- Novel Higgs Decays and Dark Matter in the E(6)SSM
- Multi-component dark matter from a hidden gauged SU(3)
- Exotic Higgs decays in the E6 inspired SUSY models
- Direct Detection of Dynamical Dark Matter
- Two dark matter candidates: the case of inert doublet and singlet scalars
- Strategies for Probing Non-Minimal Dark Sectors at Colliders: The Interplay Between Cuts and Kinematic Distributions
- Invisible Higgs decay with B\to Kν\barν constraint
- The Supersymmetric Standard Models with Decay and Stable Dark Matters
- Constraints on electron-scattering interpretation of XENON1T excess
- Non-Minimal Dark Sectors: Mediator-Induced Decay Chains and Multi-Jet Collider Signatures
- (In)Direct Detection of Boosted Dark Matter
- Little Higgs model with new Z-parity and Dark matter
- Dark matter signals and cosmic ray anomalies in an extended seesaw model