Late-time vacuum phase transitions: Connecting sub-eV scale physics with cosmological structure formation
arXiv:1401.1923 · doi:10.1103/PhysRevD.90.063009
Abstract
We show that a particular class of postrecombination phase transitions in the vacuum can lead to localized overdense regions on relatively small scales, roughly 10^6 to 10^10 M_sun, potentially interesting for the origin of large black hole seeds and for dwarf galaxy evolution. Our study suggests that this mechanism could operate over a range of conditions which are consistent with current cosmological and laboratory bounds. One byproduct of phase transition bubble-wall decay may be extra radiation energy density. This could provide an avenue for constraint, but it could also help reconcile the discordant values of the present Hubble parameter (H_0) and sigma_8 obtained by cosmic microwave background (CMB) fits and direct observational estimates. We also suggest ways in which future probes, including CMB considerations (e.g., early dark energy limits), 21-cm observations, and gravitational radiation limits, could provide more stringent constraints on this mechanism and the sub-eV scale beyond-standard-model physics, perhaps in the neutrino sector, on which it could be based. Late phase transitions associated with sterile neutrino mass and mixing may provide a way to reconcile cosmological limits and laboratory data, should a future disagreement arise.
17 pages, 18 figures. v2: includes additional references and minor corrections/clarifications. v3: includes additional text, figures, and references (matches published version)
References in corpus (15)
- A luminous quasar at a redshift of z = 7.085
- Cosmology at Low Frequencies: The 21 cm Transition and the High-Redshift Universe
- Tests of general relativity from timing the double pulsar
- Quasar-Lyman Forest Cross-Correlation from BOSS DR11 : Baryon Acoustic Oscillations
- Upper bounds on the low-frequency stochastic gravitational wave background from pulsar timing observations: current limits and future prospects
- Gravitational wave generation from bubble collisions in first-order phase transitions: an analytic approach
- Formation of z ~ 6 quasars from hierarchical galaxy mergers
- Quasars at z=6: the survival of the fittest
- The White Dwarf Cooling Sequence of NGC6397
- HD 140283: A Star in the Solar Neighborhood that Formed Shortly After the Big Bang
- Limits on Dark Radiation, Early Dark Energy, and Relativistic Degrees of Freedom
- Future CMB Constraints on Early, Cold, or Stressed Dark Energy
- Light Element Signatures of Sterile Neutrinos and Cosmological Lepton Numbers
- Fundamental physics and cosmology with LISA
- Radiative neutrino mass generation and dark energy
Cited by in corpus (8)
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- Cosmology Intertwined: A Review of the Particle Physics, Astrophysics, and Cosmology Associated with the Cosmological Tensions and Anomalies
- Consequences of neutrino self interactions for weak decoupling and big bang nucleosynthesis
- Probing self-interacting sterile neutrino dark matter with the diffuse supernova neutrino background
- Gravitational wave induced baryon acoustic oscillations