The Relaxed Universe: towards solving the cosmological constant problem dynamically from an effective action functional of gravity
arXiv:0912.0677 · doi:10.1016/j.physletb.2010.04.029
Abstract
We present an unconventional approach for addressing the old cosmological constant (CC) problem in a class of F(R,G) models of modified gravity. For a CC of arbitrary size and sign the corresponding cosmological evolution follows an expansion history which strikingly resembles that of our real universe. The effects of the large CC are relaxed dynamically and there is no fine-tuning at any stage. In addition, the relaxation mechanism alleviates the coincidence problem. The upshot is that a large cosmological constant and the observed cosmic expansion history coexist peacefully in the Relaxed Universe. This model universe can be thought of as an interesting preliminary solution of the cosmological constant problem, in the sense that it provides a successful dynamical mechanism able to completely avoid the fine-tuning problem (the toughest aspect of the CC problem). However, since the Relaxed Universe is formulated within the context of modified gravity, it may still suffer of some of the known issues associated with these theories, and therefore it can be viewed only as a toy-model proposal towards a final solution of the CC problem.
9 pages, 1 figure; references added, matches published version
References in corpus (9)
- Dynamics of dark energy
- Avoiding Dark Energy with 1/R Modifications of Gravity
- On the possible running of the cosmological "constant"
- Ghosts, Instabilities, and Superluminal Propagation in Modified Gravity Models
- LXCDM: a cosmon model solution to the cosmological coincidence problem?
- Relaxing a large cosmological constant
- The solution of the cosmological constant problem from the inhomogeneous equation of state - a hint from modified gravity?
- Vacuum Energy as the Origin of the Gravitational Constant
- Perturbations in the relaxation mechanism for a large cosmological constant
Cited by in corpus (24)
- Cosmological constant and vacuum energy: old and new ideas
- Dynamical vacuum energy in the expanding Universe confronted with observations: a dedicated study
- Noether symmetries and analytical solutions in f(T)-cosmology: A complete study
- Observational constraints on viable f(R) parametrizations with geometrical and dynamical probes
- Generalizing the running vacuum energy model and comparing with the entropic-force models
- Renormalizing the vacuum energy in cosmological spacetime: implications for the cosmological constant problem
- Hubble expansion and structure formation in the "running FLRW model" of the cosmic evolution
- Resembling dark energy and modified gravity with Finsler-Randers cosmology
- Cosmologies with a time dependent vacuum
- Cosmological equivalence between the Finsler-Randers space-time and the DGP gravity model
- Dynamically avoiding fine-tuning the cosmological constant: the "Relaxed Universe"
- Confronting the relaxation mechanism for a large cosmological constant with observations
- Filtering out the cosmological constant in the Palatini formalism of modified gravity
- Exact solutions, finite time singularities and non-singular universe models from a variety of cosmologies
- Scalar-tensor theory with Lagrange multipliers: a way of understanding the cosmological constant problem, and future singularities
- Stress-Energy Connection and Cosmological Constant Problem
- Mass Varying Neutrinos, Quintessence, and the Accelerating Expansion of the Universe
- Evolution of cosmological perturbations in an RG-driven inflationary scenario
- Relaxing a large cosmological constant in the astrophysical domain
- The cosmological constant filter without big bang singularity
- On analytical solutions of f(R) modified gravity theories in FLRW cosmologies
- The cosmological constant and the relaxed universe
- A simple toy model for a unified picture of dark energy, dark matter, and inflation
- Single scale factor for the universe from the creation of radiation and matter till the present