Low Scale Leptogenesis and Dark Matter Candidates in an Extended Seesaw Model
arXiv:0710.2416 · doi:10.1088/1475-7516/2008/05/004
Abstract
We consider a variant of seesaw mechanism by introducing extra singlet neutrinos and singlet scalar boson, and show how low scale leptogenesis is successfully realized in this scenario. We examine if the newly introduced neutral particles, either singlet Majorana neutrino or singlet scalar boson, can be a candidate for dark matter. We also discuss the implications of the dark matter detection through the scattering off the nucleus of the detecting material on our scenarios for dark matter. In addition, we study the implications for the search of invisible Higgs decay at LHC, which may serve as a probe of our scenario for dark matter.
correct typo and reference
References in corpus (5)
- Gauge Singlet Scalars as Cold Dark Matter
- micrOMEGAs2.0: a program to calculate the relic density of dark matter in a generic model
- Towards Closing the Window on Strongly Interacting Dark Matter: Far-Reaching Constraints from Earth's Heat Flow
- Extended double seesaw model for neutrino mass spectrum and low scale leptogenesis
- Self Interacting Dark Matter in the Solar System
Cited by in corpus (8)
- Neutrino mass, Dark Matter and Baryon Asymmetry via TeV-Scale Physics without Fine-Tuning
- Dark Matter Evidence, Particle Physics Candidates and Detection Methods
- Thermal Dark Matter From A Highly Decoupled Sector
- A Model of TeV Scale Physics for Neutrino Mass, Dark Matter and Baryon Asymmetry and its Phenomenology
- Novel Higgs Decays and Dark Matter in the E(6)SSM
- Scalar Dark Matter: Real vs Complex
- Sterile neutrinos, decay and the W-boson mass anomaly in a Flipped from F-theory
- Roles of sterile neutrinos in particle physics and cosmology