Searching for dark energy with the Sun
arXiv:2205.14134 · doi:10.1051/0004-6361/202244176
Abstract
General extensions of General Relativity (GR) based on bona fide degrees of freedom predict a fifth force which operates within massive objects, opening up an exciting opportunity to perform precision tests of gravity at stellar scales. Here, focusing on general scalar-tensor theories for dark energy, we utilize the Sun as our laboratory and search for imprints of the fifth-force effect on the solar equilibrium structure. With analytic results and numerical simulations, we explain how the different solar regions offer powerful ways to test gravity. Accounting for the delicate interplay between fifth force and solar microphysics such as opacity, diffusion, equation of state and metallicity, we demonstrate that the fifth force still leaves a sharp signature on the solar sound speed, in a region where simple estimates of input physics uncertainties become negligible. For general scalar-field extensions of GR, known as (U-)DHOST, based solely on the observational helioseismic errors, our analysis at the equilibrium level allows to place an approximate constraint on the fifth-force coupling strength of at . This result improves previous stellar constraints by orders of magnitude, and should be confirmed and improved by future helioseismic inversions in modified gravity combined with an elaborate accounting of theoretical uncertainties. Our analysis can be applied to a wide set of theories beyond GR, and also paves the way for helioseismic analyses in this context. In this regard, we discuss how the solar radiative and convective zone can be employed as promising laboratories to test generic theories of gravity.
13 pages, 10 figures. Comments are welcome
References in corpus (20)
- Modules for Experiments in Stellar Astrophysics (MESA)
- Dark Energy after GW170817: dead ends and the road ahead
- Strong constraints on cosmological gravity from GW170817 and GRB 170817A
- Implications of the Neutron Star Merger GW170817 for Cosmological Scalar-Tensor Theories
- Healthy theories beyond Horndeski
- Degenerate higher order scalar-tensor theories beyond Horndeski up to cubic order
- A new Generation of Standard Solar Models
- Observational constraints on the origin of the elements. IV: The standard composition of the Sun
- Breaking of Vainshtein screening in scalar-tensor theories beyond Horndeski
- Vainshtein mechanism after GW170817
- On the opacity change required to compensate for the revised solar composition
- Vainshtein regime in Scalar-Tensor gravity: constraints on DHOST theories
- Built-in scordatura in U-DHOST
- Stellar Pulsations in Beyond Horndeski Gravity Theories
- Regular black holes and gravitational particle-like solutions in generic DHOST theories
- Compact objects of spherical symmetry in beyond Horndeski theories
- Future constraints on the gravitational slip with the mass profiles of galaxy clusters
- CMB constraints on DHOST theories
- Multi-component DHOST analysis in galaxy clusters
- Probing Vainsthein-screening gravity with galaxy clusters using internal kinematics and strong and weak lensing
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- Gravitational Redshift Constraints on the Effective Theory of Interacting Dark Energy
- More on the first-order thermodynamics of scalar-tensor and Horndeski gravity
- Planetary seismology as a test of modified gravity proposals
- Early evolution of fully convective stars in scalar-tensor gravity
- Cooling process of substellar objects in scalar-tensor gravity
- Recent Developments in Degenerate Higher Order Scalar Tensor Theories
- Signatures of Solar Chameleons in the Earth's Magnetic Field
- Refining Bounds for Snyder and GUP Models through Seismic Wave Analysis
- Cosmic magnification in beyond-Horndeski gravity
- Effect of primary scalar hair on black hole's strong lensing in Beyond Horndeski Gravity