Inflation and the cosmological (not-so) constant in unimodular gravity
arXiv:2202.04029 · doi:10.1088/1361-6382/ac52bc
Abstract
We propose a mechanism for generating an inflationary phase in the early universe without resorting to any type of scalar field(s). Instead, this accelerated expansion is driven by a dynamical "cosmological constant" in the framework of unimodular gravity. The time dependent cosmological constant can be related to an energy diffusion term that arises naturally in unimodular gravity due to its restrictive diffeomorphism invariance. We derive the generic conditions required for any type of diffusion to generate a realistic inflationary epoch. Furthermore, for a given parameterization of inflation (in terms of the Hubble flow functions), we show how to construct the corresponding diffusion term in such a way that a smooth transition occurs between inflation and the subsequent radiation dominated era, hence reheating proceeds naturally. The primordial spectrum is obtained during the inflationary phase by considering inhomogeneous perturbations associated to standard hydrodynamical matter (modeled as a single ultra-relativistic fluid). We demonstrate that the resulting spectrum is equivalent to that obtained in traditional inflationary models, and is also independent of the particular form of the diffusion term. In addition, we analyze the feasibility of identifying the variable cosmological constant, responsible for the inflationary expansion, with the current observed value.
39 pages, 6 Figures. Some references added. Accepted for publication in CQG
References in corpus (19)
- Unified cosmic history in modified gravity: from F(R) theory to Lorentz non-invariant models
- Dark torsion as the cosmic speed-up
- Cosmological Evolution of a Quintom Model of Dark Energy
- On the evolution of the Hubble constant with the SNe Ia Pantheon Sample and Baryon Acoustic Oscillations: a feasibility study for GRB-cosmology in 2030
- Observational information for f(T) theories and Dark Torsion
- The Measure Problem in Cosmology
- Dark energy from the string axiverse
- Cosmological Perturbations in Unimodular Gravity
- K-inflationary Power Spectra in the Uniform Approximation
- To conserve, or not to conserve: A review of nonconservative theories of gravity
- Cosmic acceleration in unimodular gravity
- Diffusion in unimodular gravity: Analytical solutions, late-time acceleration, and cosmological constraints
- Inflation without Inflaton(s)
- CDM Model as a Unified Origin of Holographic and Agegraphic Dark Energy Models
- On the viability of the evolution of the universe with Geometric Inflation
- Inhomogeneities from quantum collapse scheme without inflation
- A unified geometric description of the Universe: from inflation to late-time acceleration without an inflaton nor a cosmological constant
- Generalized unimodular gravity as a form of k-essence
- Cosmological consequences of a scalar field with oscillating equation of state. III. Unifying inflation with dark energy and small tensor-to-scalar ratio
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- Reconstruction of inflationary scenarios in non-conservative unimodular gravity
- Stochastic dark matter: Covariant Brownian motion from Planckian discreteness
- Non-minimal Unimodular Inflation
- Higgs Inflation in Unimodular Gravity
- Gravitational radiation from binary systems in Unimodular gravity
- Charged thin shells in unimodular gravity