Density Perturbations for Running Cosmological Constant
arXiv:gr-qc/0609017 · doi:10.1088/1475-7516/2007/02/016
Abstract
The dynamics of density and metric perturbations is investigated for the previously developed model where the decay of the vacuum energy into matter (or vice versa) is due to the renormalization group (RG) running of the cosmological constant (CC) term. The evolution of the CC depends on the single parameter ν, which characterizes the running of the CC produced by the quantum effects of matter fields of the unknown high energy theory below the Planck scale. The sign of νindicates whether bosons or fermions dominate in the running. The spectrum of perturbations is computed assuming an adiabatic regime and an isotropic stress tensor. Moreover, the perturbations of the CC term are generated from the simplest covariant form suggested by the RG model under consideration. The corresponding numerical analysis shows that for ν>0 there is a depletion of the matter power spectrum at low scales (large wave numbers) as compared to the standard LCDM model, whereas for ν<0 there is an excess of power at low scales. We find that the LSS data rule out the range |ν|> 10^{-4} while the values |ν|< 10^{-6} look perfectly acceptable. For ν<0 the excess of power at low scales grows rapidly and the bound is more severe. From the particle physics viewpoint, the values |ν|\sim 10^{-6} correspond to the ``desert'' in the mass spectrum above the GUT scale M_X\sim 10^{16} GeV. Our results are consistent with those obtained in other dynamical models admitting an interaction between dark matter and dark energy. We find that the matter power spectrum analysis is a highly efficient method to discover a possible scale dependence of the vacuum energy.
LaTeX, 21 pages, 5 figures. Extended discussion, references added. Version accepted in JCAP
References in corpus (13)
- Dynamics of dark energy
- Cosmology and the Fate of Dilatation Symmetry
- Three-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Temperature Analysis
- WMAP constraints on low redshift evolution of dark energy
- Cosmologies with Energy Exchange
- Matter density perturbations in interacting quintessence models
- LXCDM: a cosmon model solution to the cosmological coincidence problem?
- Evolving Newton's Constant, Extended Gravity Theories and SnIa Data Analysis
- Modified equation of state, scalar field, and bulk viscosity in Friedmann universe
- Composite dark energy: cosmon models with running cosmological term and gravitational coupling
- The Cosmological Constant Problem, an Inspiration for New Physics
- Cosmology with variable parameters and effective equation of state for Dark Energy
- Cosmology with running parameters
Cited by in corpus (51)
- Probing the Coupling between Dark Components of the Universe
- Cosmological constant and vacuum energy: old and new ideas
- On the possible running of the cosmological "constant"
- Effective Action of Vacuum: Semiclassical Approach
- Hubble expansion & Structure Formation in Time Varying Vacuum Models
- Transition Redshift: New Kinematic Constraints from Supernovae
- Dark energy: a quantum fossil from the inflationary Universe?
- Dynamical vacuum energy in the expanding Universe confronted with observations: a dedicated study
- Hubble expansion and structure formation in the "running FLRW model" of the cosmic evolution
- Viscous dark fluid universe
- Dark energy perturbations and cosmic coincidence
- Entropic-force dark energy reconsidered
- Non-adiabatic dark fluid cosmology
- Evolution of density perturbations in decaying vacuum cosmology
- Ruling out the Modified Chaplygin Gas Cosmologies
- Cosmic perturbations with running G and Lambda
- The spherical collapse model in time varying vacuum cosmologies
- Galaxy rotation curves from General Relativity with Renormalization Group corrections
- Dynamically avoiding fine-tuning the cosmological constant: the "Relaxed Universe"
- Effective equation of state for running vacuum: "mirage" quintessence and phantom dark energy
- Renormalization group scale-setting in astrophysical systems
- Scalar models for the generalized Chaplygin gas and the structure formation constraints
- Composite dark energy: cosmon models with running cosmological term and gravitational coupling
- Matter Power Spectrum for the Generalized Chaplygin Gas Model: The Newtonian Approach
- Cosmological Constant Problems and Renormalization Group
- Evolution of density perturbations in decaying vacuum cosmology: The case of non-zero perturbations in the cosmological term
- Effective growth of matter density fluctuations in the running LCDM and LXCDM models
- Understanding the origin of CMB constraints on Dark Energy
- On Cosmological Implications of Gravitational Trace Anomaly
- Perturbations for transient acceleration
- Testing dark matter warmness and quantity via the reduced relativistic gas model
- Constraints on running vacuum model with and
- Scalar Field Reconstruction of Power-Law Entropy-Corrected HDE
- Perturbations in the relaxation mechanism for a large cosmological constant
- Power spectrum in the Chaplygin gas model: tachyonic, fluid and scalar field representations
- Cosmological Perturbations and the Running Cosmological Constant Model
- Constraints from observational data for a running cosmological constant and warm dark matter with curvature
- Scalar Field Theory Description of the Running Vacuum Model: the Vacuumon
- Matter Perturbations in Scaling Cosmology
- Vacuum stress-tensor in SSB theories
- DM particles: how warm they can be?
- Cosmological Constraints on Entropic Cosmology with Matter Creation
- Interactions in the dark sector of the Universe
- Primordial universe with the running cosmological constant
- Scale-dependent cosmology from effective quantum gravity in the invariant framework
- Observational constraints on running vacuum model
- Matter density perturbation and power spectrum in running vacuum model
- Inhomogeneous and interacting vacuum energy
- Some remarks on the observational constraints on the self-interacting scalar field model for dark energy
- Scale-dependent gravity and covariant scale-setting
- Holographic Ricci DE as running vacuum with nonlinear interactions