Phenomenology and Cosmology of an Electroweak Pseudo-Dilaton and Electroweak Baryons
arXiv:1111.4495 · doi:10.1007/JHEP03(2012)026
Abstract
In many strongly-interacting models of electroweak symmetry breaking the lowest-lying observable particle is a pseudo-Goldstone boson of approximate scale symmetry, the pseudo-dilaton. Its interactions with Standard Model particles can be described using a low-energy effective nonlinear chiral Lagrangian supplemented by terms that restore approximate scale symmetry, yielding couplings of the pseudo-dilaton that differ from those of a Standard Model Higgs boson by fixed factors. We review the experimental constraints on such a pseudo-dilaton in light of new data from the LHC and elsewhere. The effective nonlinear chiral Lagrangian has Skyrmion solutions that may be identified with the `electroweak baryons' of the underlying strongly-interacting theory, whose nature may be revealed by the properties of the Skyrmions. We discuss the finite-temperature electroweak phase transition in the low-energy effective theory, finding that the possibility of a first-order electroweak phase transition is resurrected. We discuss the evolution of the Universe during this transition and derive an order-of-magnitude lower limit on the abundance of electroweak baryons in the absence of a cosmological asymmetry, which suggests that such an asymmetry would be necessary if the electroweak baryons are to provide the cosmological density of dark matter. We revisit estimates of the corresponding spin-independent dark matter scattering cross section, with a view to direct detection experiments.
34 pages, 4 figures, additional references added
References in corpus (12)
- Light scalar at LHC: the Higgs or the dilaton?
- The Probable Fate of the Standard Model
- Particle physics catalysis of thermal Big Bang Nucleosynthesis
- Gravitational Waves from Warped Spacetime
- Universal behavior in the scattering of heavy, weakly interacting dark matter on nuclear targets
- A Very Light Dilaton
- Parameter in the Holographic Walking/Conformal Technicolor
- If no Higgs then what?
- WW Scattering in Walking Technicolor
- Reduction Schemes in Cutoff Regularization and Higgs Decay into Two Photons
- Conformal Higgs, or techni-dilaton- composite Higgs near conformality
- Dangerous Skyrmions in Little Higgs Models
Cited by in corpus (28)
- The Effective Chiral Lagrangian for a Light Dynamical "Higgs Particle"
- Model-Independent Bounds on a Light Higgs
- Fingerprinting Higgs Suspects at the LHC
- Disentangling a dynamical Higgs
- New Physics in LHC Higgs boson pair production
- Global Analysis of the Higgs Candidate with Mass ~ 125 GeV
- Effective Theory of a Light Dilaton
- Strong Higgs Interactions at a Linear Collider
- Higgs pair production in vector-boson fusion at the LHC and beyond
- Phase Transitions in Particle Physics -- Results and Perspectives from Lattice Quantum Chromo-Dynamics
- Baryogenesis from Strong CP Violation and the QCD Axion
- Global Analysis of Experimental Constraints on a Possible Higgs-Like Particle with Mass ~ 125 GeV
- Standard Model anatomy of WIMP dark matter direct detection I: weak-scale matching
- Determining Higgs couplings with a model-independent analysis of h ->gamma gamma
- Resonance at 125 GeV: Higgs or Dilaton/Radion?
- Holographic techni-dilaton at 125 GeV
- Is 125 GeV techni-dilaton found at LHC?
- Flavour with a Light Dynamical "Higgs Particle"
- Alternatives to an Elementary Higgs
- Discovering 125 GeV techni-dilaton at LHC
- Composite Inflation Setup and Glueball Inflation
- Techni-dilaton at 125 GeV
- Pseudo-spontaneous Symmetry Breaking in Hydrodynamics and Holography
- Generalized Skyrmions in QCD and the Electroweak Sector
- Indications on the Mass of the Lightest Electroweak Baryon
- Mass Corrections to Flavor-Changing Fermion-Graviton Vertices in the Standard Model
- Standard Model-like corrections to Dilatonic Dynamics
- Dynamical mass scale and approximate scaling symmetry in the Higgs sector