A de Sitter limit analysis for dark energy and modified gravity models
arXiv:1705.01960 · doi:10.1103/PhysRevD.96.024060
Abstract
The effective field theory of dark energy and modified gravity is supposed to well describe, at low energies, the behaviour of the gravity modifications due to one extra scalar degree of freedom. The usual curvature perturbation is very useful when studying the conditions for the avoidance of ghost instabilities as well as the positivity of the squared speeds of propagation for both the scalar and tensor modes, or the Stückelberg field performs perfectly when investigating the evolution of linear perturbations. We show that the viable parameters space identified by requiring no-ghost instabilities and positive squared speeds of propagation does not change by performing a field redefinition, while the requirement of the avoidance of tachyonic instability might instead be different. Therefore, we find interesting to associate to the general modified gravity theory described in the effective field theory framework, a perturbation field which will inherit the whole properties of the theory. In the present paper we address the following questions: 1) how can we define such a field? and 2) what is the mass of such a field as the background approaches a final de Sitter state? We define a gauge invariant quantity which identifies the density of the dark energy perturbation field valid for any background. We derive the mass associated to the gauge invariant dark energy field on a de Sitter background, which we retain to be still a good approximation also at very low redshift (). On this background we also investigate the value of the speed of propagation and we find that there exist classes of theories which admit a non-vanishing speed of propagation, even among the Horndeski model, for which in literature it has previously been found a zero speed. We finally apply our results to specific well known models.
22 pages
References in corpus (47)
- f(R) Theories Of Gravity
- Modified Gravity and Cosmology
- f(R) theories
- Quantum Gravity at a Lifshitz Point
- Essentials of k-essence
- Beyond the Cosmological Standard Model
- The Effective Field Theory of Inflation
- Covariant Galileon
- Membranes at Quantum Criticality
- Healthy theories beyond Horndeski
- Generalized Galileons: All scalar models whose curved background extensions maintain second-order field equations and stress tensors
- Cosmological Tests of Modified Gravity
- Quintessence: A Review
- A healthy extension of Horava gravity
- Effective Field Theory for Inflation
- Starting the Universe: Stable Violation of the Null Energy Condition and Non-standard Cosmologies
- Beyond CDM: Problems, solutions, and the road ahead
- The Effective Field Theory of Dark Energy
- Essential Building Blocks of Dark Energy
- Approaches to Understanding Cosmic Acceleration
- Horava-Lifshitz Cosmology: A Review
- Dark Energy or Modified Gravity? An Effective Field Theory Approach
- Cosmology of a covariant Galileon field
- The Effective Theory of Quintessence: the w<-1 Side Unveiled
- Conditions for the cosmological viability of the most general scalar-tensor theories and their applications to extended Galileon dark energy models
- Effective Field Theory of Cosmic Acceleration: an implementation in CAMB
- A unifying description of dark energy
- Constraints on Einstein-Æther theory and Horava gravity from binary pulsar observations
- Effective Field Theory of Cosmic Acceleration: constraining dark energy with CMB data
- Hořava Gravity at a Lifshitz Point: A Progress Report
- A formal introduction to Horndeski and Galileon theories and their generalizations
- Effective Field Theory of Cosmological Perturbations
- Observational constraints on Galileon cosmology
- A Simplified Approach to General Scalar-Tensor Theories
- Effective Theory of Interacting Dark Energy
- The Paths of Gravity in Galileon Cosmology
- Phenomenology of dark energy: general features of large-scale perturbations
- Effective field theory approach to modified gravity including Horndeski theory and Hořava-Lifshitz gravity
- Is the Effective Field Theory of Dark Energy Effective?
- An Extended action for the effective field theory of dark energy: a stability analysis and a complete guide to the mapping at the basis of EFTCAMB
- Jeans' Ghost
- Horava Gravity in the Effective Field Theory formalism: from cosmology to observational constraints
- Weakening Gravity on Redshift-Survey Scales with Kinetic Matter Mixing
- Effective Field Theory of Dark Energy: a Dynamical Analysis
- Vector and tensor perturbations in Horava-Lifshitz cosmology
- On the stability conditions for theories of modified gravity in presence of matter fields
- Scalar graviton in the healthy extension of Hořava-Lifshitz theory