Two Component Dark Matters in S_4 x Z_2 Flavor Symmetric Extra U(1) Model
arXiv:1106.4717 · doi:10.1143/PTP.126.855
Abstract
We study cosmic-ray anomaly observed by PAMELA based on E_6 inspired extra U(1) model with S_4 x Z_2 flavor symmetry. In our model, the lightest flavon has very long lifetime of O(10^{18)) second which is longer than the age of the universe, but not long enough to explain the PAMELA result ~ O(10^{26}) sec. Such a situation could be avoidable by considering that the flavon is not the dominant component of dark matters and the dominant one is the lightest neutralino. With appropriate parameter set, density parameter of dark matter and over-abundance of positron flux in cosmic-ray are realized at the same time. There is interesting correlation between spectrum of positron flux and V_{MNS}. No excess of anti-proton in cosmic-ray suggests that sfermions are heavier than 4 TeV and the masses of the light Higgs bosons are degenerated.
22 pages, 4 figures, 2 tables; version accepted for publication in Progress of Theoretical Physics
Cited by in corpus (15)
- Residual Symmetries for Neutrino Mixing with a Large theta_13 and Nearly Maximal delta_D
- Two-Component Dark Matter
- NLO+NLL Collider Bounds, Dirac Fermion and Scalar Dark Matter in the B-L Model
- Neutrino masses and mixing: a flavour symmetry roadmap
- Multi-Component Dark Matter: the vector and fermion case
- Two dark matter candidates: the case of inert doublet and singlet scalars
- Predictive Discrete Dark Matter Model
- Phenomenology of -Inspired Leptophobic Boson at the LHC
- Two Component Feebly Interacting Massive Particle (FIMP) Dark Matter
- Natural Flavour Conservation in a three Higg-doublet Model
- PeV Scale Right Handed Neutrino Dark Matter in Flavor Symmetric extra U(1) model
- Prospecting bipartite Dark Matter through Gravitational Waves
- Phenomenology of S_4 Flavor Symmetric extra U(1) model
- Symmetryless Dark Matter
- Two-component Dark Matter and low scale Thermal Leptogenesis