Scale-invariant scalar field dark matter through the Higgs portal
arXiv:1802.09434 · doi:10.1007/JHEP05(2018)129
Abstract
We discuss the dynamics and phenomenology of an oscillating scalar field coupled to the Higgs boson that accounts for the dark matter in the Universe. The model assumes an underlying scale invariance such that the scalar field only acquires mass after the electroweak phase transition, behaving as dark radiation before the latter takes place. While for a positive coupling to the Higgs field the dark scalar is stable, for a negative coupling it acquires a vacuum expectation value after the electroweak phase transition and may decay into photon pairs, albeit with a mean lifetime much larger than the age of the Universe. We explore possible astrophysical and laboratory signatures of such a dark matter candidate in both cases, including annihilation and decay into photons, Higgs decay, photon-dark scalar oscillations and induced oscillations of fundamental constants. We find that dark matter within this scenario will be generically difficult to detect in the near future, except for the promising case of a 7 keV dark scalar decaying into photons, which naturally explains the observed galactic and extra-galactic 3.5 keV X-ray line.
Version to match the one published in Journal of High Energy Physics
References in corpus (15)
- Searching for dilaton dark matter with atomic clocks
- Equivalence Principle Violations and Couplings of a Light Dilaton
- Search for ultralight scalar dark matter with atomic spectroscopy
- Searching for dark matter and variation of fundamental constants with laser and maser interferometry
- Heavy Dark Matter Through the Higgs Portal
- Primordial Curvature Fluctuation and Its Non-Gaussianity in Models with Modulated Reheating
- The Poker Face of the Majoron Dark Matter Model: LUX to keV Line
- Discovery of a 3.5 keV line in the Galactic Center and a Critical Look at the Origin of the Line Across Astronomical Targets
- Quantum gravity fluctuations flatten the Planck-scale Higgs potential
- Cold keV dark matter from decays and scatterings
- The 7 keV axion dark matter and the X-ray line signal
- Weyl Current, Scale-Invariant Inflation and Planck Scale Generation
- Self-Interacting Dark Matter through the Higgs Portal
- Standard Model with a real singlet scalar and inflation
- Generating X-ray lines from annihilating dark matter
Cited by in corpus (29)
- Ricci Reheating
- Misalignment & Co.: (Pseudo-)scalar and vector dark matter with curvature couplings
- The Higgs Portal to Cosmology
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- Constraining power of asymptotic safety for scalar fields
- Dark matter from scalar field fluctuations
- Trans-Planckian Censorship, Inflation and Dark Matter
- Lightish but clumpy: scalar dark matter from inflationary fluctuations
- Warm Little Inflaton becomes Cold Dark Matter
- Non-thermal production of Dark Matter after Inflation
- Vibronic branching ratios for nearly-closed rapid photon cycling of SrOH
- Magneto-optical trapping of a heavy polyatomic molecule for precision measurement
- Hidden Photon Dark Matter Interacting via Axion-like Particles
- Testing scale-invariant inflation against cosmological data
- Challenging the Stability of Light Millicharged Dark Matter
- Standard model Higgs field and hidden sector cosmology
- Multi-fluid cosmology in Einstein gravity: analytical solutions
- Electroweak Asymmetric Early Universe via a Scalar Condensate
- Very Light Asymmetric Dark Matter
- Probing Bosonic Stars with Atomic Clocks
- Spectator dark matter in non-standard cosmologies
- Using atomic clocks to detect local dark matter halos
- Higgs-portal dark matter from non-supersymmetric strings
- Dark matter annihilation into leptons through gravity portals
- Can dark matter drive electroweak symmetry breaking?
- Gravitational waves from a curvature-induced phase transition of a Higgs-portal dark matter sector
- Observational constraints on dark matter decaying via gravity portals
- Probing Dark Matter Clumps, Strings and Domain Walls with Gravitational Wave Detectors
- Improved effective potential of Gildener-Weinberg models