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The Dark Energy in Scalar-tensor Cosmology

High Energy Physics - Theory 2007-05-23 v2 Astrophysics General Relativity and Quantum Cosmology High Energy Physics - Phenomenology

Abstract

Recent observations confirm that our universe is flat and consists of a dark energy component with negative pressure. This dark energy is responsible for the recent cosmic acceleration as well as determines the feature of future evolution of the universe. In this paper, we discuss the dark energy of the universe in the framework of scalar-tensor cosmology. In the very early universe, the gravitational scalar field ϕ\phi plays the roll of the inflaton field and drives the universe to expand exponentially. In this period the field ϕ\phi acts as a cosmological constant and dominates the energy budget, the equation of state (EoS) is w=1w=-1. The universe exits from inflation gracefully and with no reheating. Afterwards, the field ϕ\phi appears as a cold dark matter and continues to dominate the energy budget, the universe expands according to 2/3 power law, the EoS is w=0w=0. Eventually, by the epoch of zO(1)z\sim O(1), the field ϕ\phi contributes a significant component of dark energy with negative pressure and accellerates the late universe. In the future the universe will expand acceleratedly according to a(t)t1.31a(t)\sim t^{1.31}.

Keywords

Cite

@article{arxiv.hep-th/0601189,
  title  = {The Dark Energy in Scalar-tensor Cosmology},
  author = {Mian Wang},
  journal= {arXiv preprint arXiv:hep-th/0601189},
  year   = {2007}
}

Comments

12pages. 1 ps figure. Submitted to Phys. Rev. Lett

R2 v1 2026-07-22T15:34:29.722Z