Axion Homeopathy: Screening Dilaton Interactions
arXiv:2110.10352 · doi:10.1088/1475-7516/2022/04/007
Abstract
Cosmologically active Brans-Dicke (or dilaton) scalar fields are generically ruled out by solar system tests of gravity unless their couplings to ordinary matter are much suppressed relative to gravitational strength, and this is a major hindrance when building realistic models of light dilatons coupled to matter. We propose a new mechanism for evading such bounds if matter also couples to a light axion, that exploits nonlinear target-space curvature interactions to qualitatively change how the fields respond to a gravitating source. We find that dilaton-matter couplings that would be excluded in the absence of an axion can become acceptable given an additional small axion-matter coupling, and this is possible because the axion-dilaton interactions end up converting the would-be dilaton profile into an axion profile. The trajectories of matter test bodies are then controlled by the much weaker axion-matter couplings and can easily be small enough to escape detection. We call this mechanism Axion Homeopathy because the evasion of the dilaton-coupling bounds persists for extremely small axion couplings provided only that they are nonzero. We explore the mechanism using axio-dilaton equations that are SL(2,R) invariant (as often appear in string compactifications), since for these the general solutions exterior to a spherically symmetric source can be found analytically. We use this solution to compute the relevant PPN parameters, and , and verify that their difference from unity can be much smaller than would have been true in the absence of axion-matter couplings and so can therefore evade the experimental bounds.
Version that will appear in the journal; typos corrected (updated formulae for PPN parameters); some new references. 20 pages, 2 figures
References in corpus (8)
- The Confrontation between General Relativity and Experiment
- Cosmology and the Fate of Dilatation Symmetry
- In the Realm of the Hubble tension a Review of Solutions
- Tests of general relativity from timing the double pulsar
- Equivalence Principle Violations and Couplings of a Light Dilaton
- Scaling Solutions to 6D Gauged Chiral Supergravity
- Yoga Dark Energy: Natural Relaxation and Other Dark Implications of a Supersymmetric Gravity Sector
- Who's Afraid of the Supersymmetric Dark? The Standard Model vs Low-Energy Supergravity
Cited by in corpus (14)
- Symmetry of Cosmological Observables, and a High Hubble Constant as an Indicator of a Mirror World Dark Sector
- Yoga Dark Energy: Natural Relaxation and Other Dark Implications of a Supersymmetric Gravity Sector
- Scaling Transformations and the Origins of Light Relics Constraints from Cosmic Microwave Background Observations
- RG-Induced Modulus Stabilization: Perturbative de Sitter Vacua and Improved - Inflation
- Cosmological dynamics of multifield dark energy
- Who's Afraid of the Supersymmetric Dark? The Standard Model vs Low-Energy Supergravity
- Light Axiodilatons: Matter Couplings, Weak-Scale Completions and Long-Distance Tests of Gravity
- Quantum Scale Invariant Gravity with de Donder Gauge
- Post-Newtonian Feasibility of the Closed String Massless Sector
- Imprints of screened dark energy on nonlocal quantum correlations
- Quintom fields from chiral anisotropic cosmology
- Hint of dark matter-dark energy interaction in DESI DR2 and current cosmological dataset?
- Multi-scalar theories of gravity with direct matter couplings and their parametrized post-Newtonian parameters
- Towards a de Sitter quintom-like cosmology from a reduction of a 7-dimensional theory