Towards Strong Field Tests of Beyond Horndeski Gravity Theories
arXiv:1612.04263 · doi:10.1103/PhysRevD.95.064013
Abstract
Theories of gravity in the beyond Horndeski class encompass a wide range of scalar-tensor theories that will be tested on cosmological scales over the coming decade. In this work, we investigate the possibility of testing them in the strong-field regime by looking at the properties of compact objects-neutron, hyperon, and quark stars-embedded in an asymptotically de Sitter space-time, for a specific subclass of theories. We extend previous works to include slow rotation and find a relation between the dimensionless moment of intertia, (), and the compactness, (an - relation), independent of the equation of state, that is reminiscent of but distinct from the general relativity prediction. Several of our equations of state contain hyperons and free quarks, allowing us to revisit the hyperon puzzle. We find that the maximum mass of hyperon stars can be larger than for small values of the beyond Horndeski parameter, thus providing a resolution of the hyperon puzzle based on modified gravity. Moreover, stable quark stars exist when hyperonic stars are unstable, which means that the phase transition from hyperon to quark stars is predicted just as in general relativity, albeit with larger quark star masses. Two important and potentially observable consequences of some of the theories we consider are the existence of neutron stars in a range of masses significantly higher than in GR, and - relations that differ from their GR counterparts. In the former case, we find objects that, if observed, could not be accounted for in GR because they violate the usual GR causality condition. We end by discussing several difficult technical issues that remain to be addressed in order to reach more realistic predictions that may be tested using gravitational wave searches or neutron star observations.
15 pages, 7 figures, 1 table. Updated to reflect published version. Added section IVB and appendix A
References in corpus (20)
- Dynamics of dark energy
- A Massive Pulsar in a Compact Relativistic Binary
- Beyond the Cosmological Standard Model
- Healthy theories beyond Horndeski
- Exploring gravitational theories beyond Horndeski
- Maximal freedom at minimum cost: linear large-scale structure in general modifications of gravity
- Degenerate higher order scalar-tensor theories beyond Horndeski up to cubic order
- Hyperon Puzzle: Hints from Quantum Monte Carlo Calculations
- A unifying description of dark energy
- Upper limits on the rates of binary neutron star and neutron-star--black-hole mergers from Advanced LIGO's first observing run
- Hypernuclear Physics for Neutron Stars
- Linking Tests of Gravity On All Scales: from the Strong-Field Regime to Cosmology
- Breaking of Vainshtein screening in scalar-tensor theories beyond Horndeski
- A Compendium of Chameleon Constraints
- Modified gravity inside astrophysical bodies
- Constraining hypernuclear density functional with -hypernuclei and compact stars
- Disformal Theories of Gravity: From the Solar System to Cosmology
- Time-dependent spherically symmetric covariant Galileons
- Cosmological self-tuning and local solutions in generalized Horndeski theories
- Towards Viable Cosmological Models of Disformal Theories of Gravity
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- Vainshtein mechanism after GW170817
- Testing Screened Modified Gravity
- Hairy black holes in DHOST theories: Exploring disformal transformation as a solution-generating method
- Astrophysical constraints on compact objects in 4D Einstein-Gauss-Bonnet gravity
- Optimising growth of structure constraints on modified gravity
- On the screening mechanism in DHOST theories evading gravitational wave constraints
- Spontaneous scalarization with an extremely massive field and heavy neutron stars
- New constraints on cosmological modified gravity theories from anisotropic three-point correlation functions of BOSS DR12 galaxies
- Quasi-normal modes of black holes in scalar-tensor theories with non-minimal derivative couplings
- The Role of Baryon Structure in Neutron Stars
- Consistency of matter coupling in modified gravity
- Neutron stars in the braneworld within the Eddington-inspired Born-Infeld gravity
- Relativistic stars in a cubic Galileon Universe
- CMB constraints on DHOST theories
- Neutron stars in degenerate higher-order scalar-tensor theories
- Vainshtein screening for slowly rotating stars
- Stability of neutron stars in Horndeski theories with Gauss-Bonnet couplings
- The Schönberg-Chandrasekhar limit in presence of small anisotropy and modified gravity
- Dynamical Chameleon Neutron Stars: stability, radial oscillations and scalar radiation in spherical symmetry