Gravitational Effects of Disformal Couplings
arXiv:1809.09844 · doi:10.1103/PhysRevD.98.063531
Abstract
We consider how a nearly massless scalar field conformally and disformally coupled to matter can affect the dynamics of gravitationally interacting bodies. We focus on the case of two interacting objects and we obtain the effective metric driving the dynamics of the two body system when reduced to one body in the centre of mass frame. We then concentrate on the case of a light particle in the scalar and gravitational fields generated by a heavy object and find the effects of the conformal and disformal couplings on the body's trajectory such as the advance of perihelion and the Shapiro time delay. The disformal coupling leads to a negligible contribution to the Shapiro effect and therefore no constraint from the Cassini experiment. On the other hand, it contributes to the perihelion advance leading to a weak bound on the strength of the disformal coupling itself. Finally, we remark that the disformal coupling gives rise to a contribution to the perihelion advance which varies quadratically with the mass of the heavy body, leading to possible strong effects for stars in the vicinity of astrophysical black holes. For neutron stars in a binary system, the disformal effects vary as the quartic power of the size of the orbit which might lead to interesting consequences in the inspiralling phase prior to a merger.
26 pages, to appear in PRD
References in corpus (15)
- Dynamics of dark energy
- Cosmology and the Fate of Dilatation Symmetry
- Beyond the Cosmological Standard Model
- Gravitational scattering, post-Minkowskian approximation and Effective One-Body theory
- Screening Modifications of Gravity through Disformally Coupled Fields
- Non-Relativistic Gravitation: From Newton to Einstein and Back
- Investigating the Relativistic Motion of the Stars Near the Supermassive Black Hole in the Galactic Center
- Disformal couplings and the dark sector of the universe
- Disformal Theories of Gravity: From the Solar System to Cosmology
- Constraining Disformally Coupled Scalar Fields
- Towards Viable Cosmological Models of Disformal Theories of Gravity
- Two-body problem in Scalar-Tensor theories as a deformation of General Relativity : an Effective-One-Body approach
- Disformal quintessence
- Black hole accretion discs and screened scalar hair
- Vacuum Cherenkov radiation and bremsstrahlung from disformal couplings
Cited by in corpus (21)
- A local resolution of the Hubble tension: The impact of screened fifth forces on the cosmic distance ladder
- Invertible disformal transformations with higher derivatives
- Dark energy interactions near the galactic centre
- Effective field theory for gravitational radiation in scalar-tensor gravity
- Screened Fifth Forces Mediated by Dark Matter-Baryon Interactions: Theory and Astrophysical Probes
- Spin-orbit effects for compact binaries in scalar-tensor gravity
- Scalar Fields Near Compact Objects: Resummation versus UV Completion
- Disformally Coupled Scalar Fields and Inspiralling Trajectories
- Stringent Pulsar Timing Bounds on Light Scalar Couplings to Matter
- Disformally Coupled Quintessence
- Multi-scale Constraints on Scalar-Field couplings to Matter: The Geodetic and Frame-Dragging Effects
- Dark Energy as a Critical Period in Binary Motion: Bounds from Multi-scale Binaries
- Novel Screening with Two Bodies: Summing the ladder in disformal scalar-tensor theories
- Spin precession as a new window into disformal scalar fields
- Constraining a disformal Schwarzschild black hole in DHOST theories with the orbit of the S2 star
- Potential-driven Inflation with Disformal Coupling to Gravity
- The Eccentricity Distribution of Wide Binaries
- The description of gravitational waves in geometric scalar gravity
- Solar System Experiments in the Search for Dark Energy and Dark Matter
- Testing gravity with the two-body problem
- Constraints on a cubic Galileon disformally coupled to Standard Model matter