Skip to content

Cosmological consequences of a rolling homogeneous scalar field

Bharat Ratra, P. J. E. Peebles

Physical review. D. Particles, fields, gravitation, and cosmology/Physical review. D. Particles and fields · 1988 · 4,327 citationsOpen access

Abstract

The cosmological consequences of a pervasive, rolling, self-interacting, homogeneous scalar field are investigated. A number of models in which the energy density of the scalar field red-shifts in a specific manner are studied. In these models the current epoch is chosen to be scalar-field dominated to agree with dynamical estimates of the density parameter, ${\ensuremath{\Omega}}_{\mathrm{dyn}\mathrm{\ensuremath{\sim}}0.2}$, and zero spatial curvature. The required scalar-field potential is ``nonlinear'' and decreases in magnitude as the value of the scalar field increases. A special solution of the field equations which is an attractive, time-dependent, fixed point is presented. These models are consistent with the classical tests of gravitation theory. The E\"otv\"os-Dicke measurements strongly constrain the coupling of the scalar field to light (nongravitational) fields. Nucleosynthesis proceeds as in the standard hot big-bang model. In linear perturbation theory the behavior of baryonic perturbations, in the baryon-dominated epoch, do not differ significantly from the canonical scenario, while the presence of a substantial amount of homogeneous scalar-field energy density at low red-shifts inhibits the growth of perturbations in the baryonic fluid. The energy density in the scalar field is not appreciably perturbed by nonrelativistic gravitational fields, either in the radiation-dominated, matter-dominated, or scalar-field-dominated epochs. On the basis of this effect, we argue that these models could reconcile the low dynamical estimates of the mean mass density with the negligibly small spatial curvature preferred by inflation.

Cite this paper

Ratra, B., & Peebles, P. J. E. (1988). Cosmological consequences of a rolling homogeneous scalar field. Physical Review. D. Particles, Fields, Gravitation, and Cosmology Physical Review. D. Particles and Fields, 37(12), 3406–3427. https://doi.org/10.1103/physrevd.37.3406

Read it with every claim anchored

Add this paper to a project, ask questions of it, and get answers that point to the exact passage.

Start free
  1. A smooth particle mesh Ewald method1995
  2. Maps of Dust Infrared Emission for Use in Estimation of Reddening and Cosmic Microwave Background Radiation Foregrounds1998
  3. Planck 2018 results2020
  4. emcee : The MCMC Hammer2013
  5. The Two Micron All Sky Survey (2MASS)2006

Metadata from OpenAlex (CC0). Citations are generated from the published record.