Testing general scalar-tensor gravity and massive gravity with cluster lensing
arXiv:1302.2311 · doi:10.1103/PhysRevD.87.124006
Abstract
We explore the possibility of testing modified gravity exhibiting the Vainshtein mechanism against observations of cluster lensing. We work in the most general scalar-tensor theory with second-order field equations (Horndeski's theory), and derive static and spherically symmetric solutions, for which the scalar field is screened below a certain radius. It is found that the essential structure of the problem in the most general case can be captured by the program of classifying Vainshtein solutions out of different solutions to a quintic equation, as has been performed in the context of massive gravity. The key effect on gravitational lensing is that the second derivative of the scalar field can substantially be large at the transition from screened to unscreened regions, leaving a dip in the convergence. This allows us to put observational constraints on parameters characterizing the general scalar-tensor modification of gravity. We demonstrate how this occurs in massive gravity as an example, and discuss its observational signatures in cluster lensing.
10pages, 6 figures; v2: matches the published version in Phys. Rev. D
References in corpus (10)
- Resummation of Massive Gravity
- The redshift dependence of the structure of massive LCDM halos
- Infrared-modified gravities and massive gravitons
- Massive gravity: nonlinear instability of the homogeneous and isotropic universe
- Density profiles of galaxy groups and clusters from SDSS galaxy-galaxy weak lensing
- Cosmic Acceleration and the Helicity-0 Graviton
- Understanding the shape of the halo-mass and galaxy-mass cross-correlation functions
- Quasi-Dilaton: Theory and Cosmology
- Combining Lens Distortion and Depletion to Map the Mass Distribution of A1689
- Anisotropic Friedmann-Robertson-Walker universe from nonlinear massive gravity
Cited by in corpus (48)
- Massive Gravity
- Cosmological Tests of Modified Gravity
- Horndeski theory and beyond: a review
- Exploring gravitational theories beyond Horndeski
- An introduction to the Vainshtein mechanism
- Dark Energy and Modified Gravity in Degenerate Higher-Order Scalar-Tensor (DHOST) theories: a review
- Scalar-tensor theories and modified gravity in the wake of GW170817
- Dark Energy in light of Multi-Messenger Gravitational-Wave astronomy
- Breaking of Vainshtein screening in scalar-tensor theories beyond Horndeski
- Effective theory for the Vainshtein mechanism from the Horndeski action
- Relativistic Stars in Beyond Horndeski Theories
- Piercing the Vainshtein screen with anomalous gravitational wave speed: Constraints on modified gravity from binary pulsars
- Testing chameleon gravity with the Coma cluster
- Modified gravity inside astrophysical bodies
- Gravitational wave lensing beyond general relativity: birefringence, echoes and shadows
- Cosmological self-tuning and local solutions in generalized Horndeski theories
- Three-dimensional Multi-probe Analysis of the Galaxy Cluster A1689
- Screening the fifth force in the Horndeski's most general scalar-tensor theories
- Galaxy cluster lensing masses in modified lensing potentials
- New test on general relativity and torsional gravity from galaxy-galaxy weak lensing surveys
- Multi-field G-inflation
- Gravitational wave memory beyond general relativity
- Bispectrum of cosmological density perturbations in the most general second-order scalar-tensor theory
- The Shape Dependence of Vainshtein Screening
- Constraining modified theory of gravity with galaxy bispectrum
- On the screening mechanism in DHOST theories evading gravitational wave constraints
- Matter bispectrum beyond Horndeski
- New constraints on cosmological modified gravity theories from anisotropic three-point correlation functions of BOSS DR12 galaxies
- Study of eccentric binaries in Horndeski theory
- Cosmological matching conditions and galilean genesis in Horndeski's theory
- Third order solutions of the cosmological density perturbations in the Horndeski's most general scalar-tensor theory with the Vainshtein mechanism
- Cosmic structures and gravitational waves in ghost-free scalar-tensor theories of gravity
- Gravitational lensing of massive particles by a black-bounce-Schwarzschild black hole
- Horndeski gravity without screening in binary pulsars
- Testing a generalized cubic Galileon gravity model with the Coma Cluster
- Horndeski stars
- Cosmological evolution of viable models in the generalized scalar-tensor theory
- Compact astrophysical objects in modified gravity
- Horndeski extension of the minimal theory of quasidilaton massive gravity
- UV sensitive one-loop matter power spectrum in degenerate higher-order scalar-tensor theories
- Cosmology with the Square Kilometre Array by SKA-Japan
- Horndeski fermion-boson stars
- Testing generalized scalar-tensor theories of gravity with clusters of galaxies
- The 1+1+2 formalism for Scalar-Tensor gravity
- Anti-screening of the Galileon force around a disk center hole
- Recent Developments in Degenerate Higher Order Scalar Tensor Theories
- Comparison of Strong Gravitational Lens Model Software I. Time delay and mass calculations are sensitive to changes in redshift and are model dependent
- Strong field gravitational lensing of particles by a black-bounce-Schwarzschild black hole