Breaking the Vainshtein screening in clusters of galaxies
arXiv:1701.03517 · doi:10.1103/PhysRevD.95.044038
Abstract
In this work we will test an alternative model of gravity belonging to the large family of galileon models. It is characterized by an intrinsic breaking of the Vainshtein mechanism inside large astrophysical objects, thus having possibly detectable observational signatures. We will compare theoretical predictions from this model with the observed total mass profile for a sample of clusters of galaxies. The profiles are derived using two complementary tools: X-ray hot intra-cluster gas dynamics, and strong and weak gravitational lensing. We find that a dependence with the dynamical internal status of each cluster is possible; for those clusters which are very close to be relaxed, and thus less perturbed by possible astrophysical local processes, the galileon model gives a quite good fit to both X-ray and lensing observations. Both masses and concentrations for the dark matter halos are consistent with earlier results found in numerical simulations and in the literature, and no compelling statistical evidence for a deviation from general relativity is detectable from the present observational state. Actually, the characteristic galileon parameter is always consistent with zero, and only an upper limit ( at , at , and at ) can be established. Some interesting distinctive deviations might be operative, but the statistical validity of the results is far from strong, and better data would be needed in order to either confirm or reject a potential tension with general relativity.
26 pages, 3 tables, 4 figures. Accepted for publication on Phys. Rev. D
References in corpus (24)
- The Confrontation between General Relativity and Experiment
- A direct empirical proof of the existence of dark matter
- A 2.4% Determination of the Local Value of the Hubble Constant
- Beyond the Cosmological Standard Model
- Covariant Galileon
- Healthy theories beyond Horndeski
- Exploring gravitational theories beyond Horndeski
- Evading Equivalence Principle Violations, Cosmological and other Experimental Constraints in Scalar Field Theories with a Strong Coupling to Matter
- CLASH: Weak-Lensing Shear-and-Magnification Analysis of 20 Galaxy Clusters
- CLASH: The Concentration-Mass Relation of Galaxy Clusters
- Strongly Coupled Chameleon Fields: New Horizons in Scalar Field Theory
- The Bullet Cluster 1E0657-558 evidence shows Modified Gravity in the absence of Dark Matter
- Breaking of Vainshtein screening in scalar-tensor theories beyond Horndeski
- The MUSIC of CLASH: predictions on the concentration-mass relation
- Observational constraints on Galileon cosmology
- Relativistic Stars in Beyond Horndeski Theories
- CLASH-X: A Comparison of Lensing and X-ray Techniques for Measuring the Mass Profiles of Galaxy Clusters
- The observational status of Galileon gravity after Planck
- Linear perturbations in Galileon gravity models
- Modified gravity inside astrophysical bodies
- The XMM Cluster Survey: Testing chameleon gravity using the profiles of clusters
- The Vainshtein Mechanism in the Cosmic Web
- Galileon: modified gravity with massive neutrinos as a testable alternative to CDM
- Cosmological Tests of Coupled Galileons
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- Horndeski theory and beyond: a review
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- On the screening mechanism in DHOST theories evading gravitational wave constraints
- Tests of Gravity with Galaxy Clusters
- Gravitational transitions via the explicitly broken symmetron screening mechanism
- New constraints on cosmological modified gravity theories from anisotropic three-point correlation functions of BOSS DR12 galaxies
- Long Range Effects in Gravity Theories with Vainshtein Screening
- MG-MAMPOSSt: A code to test modifications of gravity with the dynamics of galaxy clusters
- Holographic and Gravity-Thermodynamic Approaches in Entropic Cosmology: Bayesian Assessment using late-time Data
- Testing non-local gravity by clusters of galaxies
- CMB constraints on DHOST theories
- Multi-component DHOST analysis in galaxy clusters
- Probing gravity with redshift-space distortions: effects of tracer bias and sample selection
- Probing Vainsthein-screening gravity with galaxy clusters using internal kinematics and strong and weak lensing
- Cosmic Time Slip: Testing Gravity on Supergalactic Scales with Strong-Lensing Time Delays
- Jointly fitting weak lensing, X-ray and Sunyaev-Zel'dovich data to constrain scalar-tensor theories with clusters of galaxies
- Testing generalized scalar-tensor theories of gravity with clusters of galaxies
- Constraints on Quasi-dilaton Massive Gravity
- Towards a sound massive cosmology