Stagflation -- Bose-Einstein condensation in the early universe
arXiv:0905.0173 · doi:10.1103/PhysRevD.80.063520
Abstract
Our universe experienced the accelerated expansion at least twice; an extreme inflationary acceleration in the early universe and the recent mild acceleration. By introducing the Bose-Einstein condensation (BEC) phase of a boson field, we have been developing a unified model of dark energy (DE) and dark matter (DM) for the later mild acceleration. In this scenario, two phases of BEC (=DE) and normal gas (=DM) transform with each other through BEC phase transition. This unified model has successfully explained the mild acceleration as an attractor. We extend this BEC cosmology to the early universe without introducing new ingredients. In this scenario, the inflation is naturally initiated by the condensation of the bosons in the huge vacuum energy. This inflation and even the cosmic expansion eventually terminates exactly at zero energy density. We call this stage as stagflation. At this stagflation era, particle production and the decay of BEC take place. The former makes the universe turn into the standard hot big bang stage and the latter makes the cosmological constant vanishingly small after the inflation. Furthermore, we calculate the density fluctuations produced in this model, which turns out to be in the range allowed by the present observational data. We also show that the stagflation is quite robust and easily appears when one allows negative region of the potential. Further, we comment on the possibility that BEC generation/decay series might have continued all the time in the cosmic history from the inflation to present.
19 pages, 8 figures
References in corpus (3)
Cited by in corpus (33)
- Mass-radius relation of Newtonian self-gravitating Bose-Einstein condensates with short-range interactions: I. Analytical results
- Bose-Einstein Condensate general relativistic stars
- Cosmological Constraints on Bose-Einstein-Condensed Scalar Field Dark Matter
- Evolution of cosmological perturbations in Bose-Einstein condensate dark matter
- Bose-Einstein condensation of dark matter solves the core/cusp problem
- Boson Stars and Oscillatons: A Review
- Phase transitions between dilute and dense axion stars
- Collapse of a self-gravitating Bose-Einstein condensate with attractive self-interaction
- Cosmological dynamics of dark matter Bose-Einstein Condensation
- Complex scalar field dark matter on galactic scales
- A predictive model of BEC dark matter halos with a solitonic core and an isothermal atmosphere
- Dark matter as a Bose--Einstein Condensate: the relativistic non-minimally coupled case
- Cosmological evolution of finite temperature Bose-Einstein Condensate dark matter
- Finite temperature effects in Bose-Einstein Condensed dark matter halos
- Jeans type instability of a complex self-interacting scalar field in general relativity
- Jeans mass-radius relation of self-gravitating Bose-Einstein condensates and typical parameters of the dark matter particle
- Boson star at finite temperature
- Cosmological Inhomogeneities with Bose-Einstein Condensate Dark Matter
- Dark Energy and Dark Matter unification via superfluid Chaplygin gas
- Polytropic equation of state and primordial quantum fluctuations
- SO(10) GUT in Four and Five Dimensions: A Review
- Gravitational, lensing, and stability properties of Bose-Einstein condensate dark matter halos
- Cosmological perturbations during the Bose-Einstein condensation of dark matter
- Quantum tunneling rate of dilute axion stars close to the maximum mass
- Compact stars admitting Finch-Skea symmetry in the presence of various matter fields
- Asymmetric dark matter with a possible Bose-Einstein condensate
- Relativistic Bose-Einstein condensate in the rainbow gravity
- Is it possible to obtain cosmic accelerated expansion through energy transfer between different energy densities?
- Condensation of Galactic Cold Dark Matter
- A mechanism for formation of Bose-Einstein condensation in cosmology
- Dark matter as the Bose-Einstein condensation in loop quantum cosmology
- Primordial Universe with radiation and Bose-Einstein condensate
- Could primordial galactic Magnetic Fields be generated by Charged Ultra-Light Boson Dark Matter?