Mirror symmetry: from active and sterile neutrino masses to baryonic and dark matter asymmetries
arXiv:1303.6545 · doi:10.1016/j.nuclphysb.2013.05.013
Abstract
We consider an SU(3)'_c\times SU(2)'_L\times U(1)'_Y mirror sector where the field content and dimensionless couplings are a copy of the SU(3)_c\times SU(2)_L\times U(1)_Y ordinary sector. Our model also contains three gauge-singlet fermions with heavy Majorana masses and an [SU(2)_L\times SU(2)'_L]-bidoublet Higgs scalar with seesaw-suppressed vacuum expectation value. The mirror sterile neutrino masses will have a form of canonical seesaw while the ordinary active neutrino masses will have a form of double and linear seesaw. In this canonical and double-linear seesaw scenario, we can expect one sterile neutrino at the eV scale and the other two above the MeV scale to fit the cosmological and short baseline neutrino oscillation data. Associated with the SU(2)_L and SU(2)'_L sphaleron processes, the decays of the fermion singlets can simultaneously generate a lepton asymmetry in the [SU(2)_L]-doublet leptons and an equal lepton asymmetry in the [SU(2)'_L]-doublet leptons to explain the existence of baryonic and dark matter. The lightest mirror baryon then should have a determined mass around 5 GeV to account for the dark matter relic density. The U(1) kinetic mixing can open a window for dark matter direct detection.
12 pages, 1 figure
References in corpus (30)
- Leptogenesis
- Secluded U(1) below the weak scale
- Global analysis of neutrino masses, mixings and phases: entering the era of leptonic CP violation searches
- Global status of neutrino oscillation parameters after Neutrino-2012
- Non-Abelian Dark Sectors and Their Collider Signatures
- A possible symmetry of the MSM
- Asymmetric Dark Matter from Leptogenesis
- Hylogenesis: A Unified Origin for Baryonic Visible Matter and Antibaryonic Dark Matter
- Light Sterile Neutrinos: Models and Phenomenology
- Neutron -- Mirror Neutron Oscillation: How Fast Might It Be?
- A Survey of Lepton Number Violation Via Effective Operators
- Mirror dark matter and the new DAMA/LIBRA results: A simple explanation for a beautiful experiment
- Aidnogenesis via Leptogenesis and Dark Sphalerons
- Radiative Neutrino Mass, Dark Matter and Leptogenesis
- Neutrino Mass and Baryon Asymmetry from Dirac Seesaw
- Leptoquarks: Neutrino masses and accelerator phenomenology
- The minimal 3+2 neutrino model versus oscillation anomalies
- Lepton number violation at the LHC with leptoquark and diquark
- Soft L_e-L_mu-L_tau flavour symmetry breaking and sterile neutrino keV Dark Matter
- Fast Neutron - Mirror Neutron Oscillation and Ultra High Energy Cosmic Rays
- New aspects of leptogenesis bounds
- Co-genesis of Matter and Dark Matter with Vector-like Fourth Generation Leptons
- Implications of mirror dark matter kinetic mixing for CMB anisotropies
- Type III Seesaw and Left-Right Symmetry
- Visible and Dark Matter Genesis and Cosmic Positron/Electron Excesses
- Different vacua in 2HDM
- Marriage between the baryonic and dark matters
- Large Lepton Asymmetry for Small Baryon Asymmetry and Warm Dark Matter
- Radiative type-I seesaw model with dark matter via U(1)_{B-L} gauge symmetry breaking at future linear colliders
- Baryon asymmetry and dark matter from soft leptogenesis
Cited by in corpus (9)
- Mirror dark matter: Cosmology, galaxy structure and direct detection
- Multicomponent dark matter particles in a two-loop neutrino model
- Galactic structure explained with dissipative mirror dark matter
- Comprehensive asymmetric dark matter model
- A Naturally Light Sterile neutrino in an Asymmetric Dark Matter Model
- WIMP dark matter in the parity solution to the strong CP problem
- An SO(10) \times SO(10)' model for common origin of neutrino masses, ordinary and dark matter-antimatter asymmetries
- The Type II Dirac Seesaw Portal to the mirror sector: Connecting neutrino masses and a solution to the strong CP problem
- A Right-handed Neutrino Portal to the Hidden sector : Active Neutrinos and their Twins in an F-theory model