Multi-Component Dark Matter Systems and Their Observation Prospects
arXiv:1207.3318 · doi:10.1103/PhysRevD.86.076015
Abstract
Conversions and semi-annihilations of dark matter (DM) particles in addition to the standard DM annihilations are considered in a three-component DM system. We find that the relic abundance of DM can be very sensitive to these non-standard DM annihilation processes, which has been recently found for two-component DM systems. To consider a concrete model of a three-component DM system, we extend the radiative seesaw model of Ma by adding a Majorana fermion χand a real scalar boson ϕ, to obtain a Z_2 \times Z'_2 DM stabilizing symmetry, where we assume that the DM particles are the inert Higgs boson, χand ϕ. It is shown how the allowed parameter space, obtained previously in the absence of χand ϕ, changes. The semi-annihilation process in this model produces monochromatic neutrinos. The observation rate of these monochromatic neutrinos from the Sun at IceCube is estimated. Observations of high energy monochromatic neutrinos from the Sun may indicate a multi-component DM system.
27 pages, 11 figures
References in corpus (34)
- Observation of an anomalous positron abundance in the cosmic radiation
- A Theory of Dark Matter
- Dark Matter Results from 225 Live Days of XENON100 Data
- Improved Naturalness with a Heavy Higgs: An Alternative Road to LHC Physics
- New results from DAMA/LIBRA
- Results from a Search for Light-Mass Dark Matter with a P-type Point Contact Germanium Detector
- Cosmology and Astrophysics of Minimal Dark Matter
- The WIMPless Miracle: Dark Matter Particles without Weak-scale Masses or Weak Interactions
- Cosmic-ray positron fraction measurement from 1 to 30 GeV with AMS-01
- Significant Gamma Lines from Inert Higgs Dark Matter
- Multi-Component Dark Matter
- Minimal Dark Matter predictions for galactic positrons, anti-protons, photons
- PAMELA Positron Excess as a Signal from the Hidden Sector
- Results from the First Science Run of the ZEPLIN-III Dark Matter Search Experiment
- IceCube: An Instrument for Neutrino Astronomy
- New Limits on Interactions between Weakly Interacting Massive Particles and Nucleons Obtained with CsI(Tl) Crystal Detectors
- The Inert Dark Matter
- Status of the Inert Doublet Model and the Role of multileptons at the LHC
- Commissioning Run of the CRESST-II Dark Matter Search
- A new viable region of the inert doublet model
- Enhancement of Dark Matter Annihilation via Breit-Wigner Resonance
- Z_3 Dark Matter and Two-Loop Neutrino Mass
- Dark Discrete Gauge Symmetries
- A Supersymmetric U(1)' Model with Multiple Dark Matters
- Anomaly Induced Dark Matter Decay and PAMELA/ATIC Experiments
- Two dark matter components in N_{DM}MSSM and dark matter extension of the minimal supersymmetric standard model and the high energy positron spectrum in PAMELA/HEAT data
- Use of event-level neutrino telescope data in global fits for theories of new physics
- Multipartite Dark Matter
- Dark matter in the supersymmetric radiative seesaw model with an anomalous U(1) symmetry
- Supersymmetric U(1) Gauge Realization of the Dark Scalar Doublet Model of Radiative Neutrino Mass
- A novel method to extract dark matter parameters from neutrino telescope data
- Signals of dark matter in a supersymmetric two dark matter model
- Supersymmetric Model of Radiative Seesaw Majorana Neutrino Masses
- Symmetries of the Scalar Sector of Multi-Higgs-Doublet Models
Cited by in corpus (68)
- micrOMEGAs4.1: two dark matter candidates
- micrOMEGAs 6.0: N-component dark matter
- Dark Matter from a Classically Scale-Invariant
- Multipartite Interacting Scalar Dark Matter in the light of updated LUX data
- MadDM v.1.0: Computation of Dark Matter Relic Abundance Using MadGraph5
- Strong phase transition, dark matter and vacuum stability from simple hidden sectors
- Status, Challenges and Directions in Indirect Dark Matter Searches
- Radiative Linear Seesaw model, Dark Matter and
- Two-loop radiative seesaw with multicomponent dark matter explaining the possible gamma excess in the Higgs boson decay and at the Fermi LAT
- A minimal model for two-component dark matter
- Multiple dark matter scenarios from ubiquitous stringy throats
- Mitigating Direct Detection Bounds in Non-minimal Higgs Portal Scalar Dark Matter Models
- Multicomponent Dark Matter from Gauge Symmetry
- Multi-Component Dark Matter: the vector and fermion case
- Scalar dark matter in the B-L model
- Impact of Semi-annihilation of Z3 Symmetric Dark Matter with Radiative Neutrino Masses
- Overcoming Velocity Suppression in Dark-Matter Direct-Detection Experiments
- Multipartite Dark Matter with Scalars, Fermions and signatures at LHC
- Multiple Gamma Lines from Semi-Annihilation
- Multi-component dark matter from a hidden gauged SU(3)
- The Thermal History of Composite Dark Matter
- Multi-component scalar dark matter from a symmetry: a systematic analysis
- Multi-Component Dark Matter in a Non-Abelian Dark Sector
- Nambu-Goldstone Dark Matter in a Scale Invariant Bright Hidden Sector
- Hadronic and hadron-like physics of Dark Matter
- Minimal Two-component Scalar Doublet Dark Matter with Radiative Neutrino Mass
- Casting a Wide Signal Net with Future Direct Dark Matter Detection Experiments
- Scalegenesis and fermionic dark matters in the flatland scenario
- Shining dark matter in Xenon1T
- Type III Seesaw for Neutrino Masses in Model with Multi-component Dark Matter
- Fermionic Semi-Annihilating Dark Matter
- Two-component scalar and fermionic dark matter candidates in a generic U model
- Strategies for Probing Non-Minimal Dark Sectors at Colliders: The Interplay Between Cuts and Kinematic Distributions
- Systematic U(1)_{B-L} Extensions of Loop-Induced Neutrino Mass Models with Dark Matter
- Radiative Neutrino Mass with Dark matter: From Relic Density to LHC Signatures
- Electroweak phase transition and gravitational waves in a two-component dark matter model
- Two Component Feebly Interacting Massive Particle (FIMP) Dark Matter
- A two-component vector WIMP -- fermion FIMP dark matter model with an extended seesaw mechanism
- Revisiting Multi-Component Dark Matter with New AMS-02 Data
- Primordial black holes and scotogenic dark matter
- Distinguishing two dark matter component particles at colliders
- Scotogenic dark matter and single-zero textures of the neutrino mass matrix
- Radiative neutrino mass, dark matter and electroweak baryogenesis from the supersymmetric gauge theory with confinement
- Multicomponent Dark Matter in Radiative Seesaw Models
- A multi-component SIMP model with
- Non-Minimal Dark Sectors: Mediator-Induced Decay Chains and Multi-Jet Collider Signatures
- Multi-component Dark Sectors: Symmetries, Asymmetries and Conversions
- Multicomponent Dark Matter in Radiative Seesaw Model and Monochromatic Neutrino Flux
- Dark Matter, Shared Asymmetries, and Galactic Gamma Ray Signals
- One-loop radiative seesaw dark matter and neutrinoless double beta decay with two zero flavor neutrino mass texture
- Parametrization of the Yukawa matrix in the scotogenic model and single-zero textures of the neutrino mass matrix
- Gravitational wave effects and phenomenology of a two-component dark matter model
- Prospecting bipartite Dark Matter through Gravitational Waves
- Explaining Low Energy -ray Excess from the Galactic Centre using a Two Component Dark Matter Model
- Non-perturbative electroweak-scalegenesis on the test bench of dark matter detection
- Universal subhalo accretion in cold and warm dark matter cosmologies
- A UV complete model for radiative seesaw and electroweak baryogenesis based on the SUSY gauge theory
- Simultaneous detection of boosted dark matter and neutrinos from the semi-annihilation at DUNE
- Dequantization of electric charge: Probing scenarios of cosmological multi-component dark matter
- Gravitational wave signatures of first-order phase transition in two-component dark matter model
- One-loop Type II Seesaw Neutrino Model with Stable Dark Matter Candidates
- Asymmetric dark matter, baryon asymmetry and lepton number violation
- From oversimplified to overlooked: the case for exploring Rich Dark Sectors
- Spin Trio: a dark matter scenario
- Neutrino mass and the Higgs portal dark matter in the ESSFSM
- Two-component asymmetric dark matter via bound states and freeze-in decay
- Primordial black holes and lepton flavor violation with scotogenic dark matter
- Multicomponent Dark Matter in the Light of CALET and DAMPE