Coupling quintessence kinetics to electromagnetism
arXiv:2209.12189 · doi:10.1088/1475-7516/2023/06/048
Abstract
We propose a general model where quintessence couples to electromagnetism via its kinetic term. This novelty generalizes the linear dependence of the gauge kinetic function on , commonly adopted in the literature. The interaction naturally induces a time variation of the fine-structure constant that can be formulated within a disformally coupled framework, akin to a Gordon metric. Through a suitable parametrization of the scalar field and the coupling function, we test the model against observations sensitive to the variation of . We undertake a Bayesian analysis to infer the free parameters with data from Earth based, astrophysical and early Universe experiments. We find that the evolution of is specific to each cosmological era and slows down at late times when dark energy accelerates the Universe. While the most stringent bound on the interaction is obtained from atomic clocks measurements, the quasars provide a constraint consistent with weak equivalence principle tests. This promising model is to be further tested with upcoming and more precise astrophysical measurements, such as those of the ESPRESSO spectrograph.
15 pages, 9 figures, 2 tables. V2: matches published version
References in corpus (30)
- Large Magellanic Cloud Cepheid Standards Provide a 1% Foundation for the Determination of the Hubble Constant and Stronger Evidence for Physics Beyond LambdaCDM
- Primordial Nucleosynthesis: from precision cosmology to fundamental physics
- Equivalence Principle Violations and Couplings of a Light Dilaton
- Spatial variation in the fine-structure constant -- new results from VLT/UVES
- MICROSCOPE mission: final results of the test of the Equivalence Principle
- The status of varying constants: a review of the physics, searches and implications
- Toward a solution of the coincidence problem
- Impact of instrumental systematic errors on fine-structure constant measurements with quasar spectra
- Interacting quintessence from a variational approach Part II: derivative couplings
- Interacting quintessence from a variational approach Part I: algebraic couplings
- High-precision limit on variation in the fine-structure constant from a single quasar absorption system
- The UVES Large Program for testing fundamental physics - III. Constraints on the fine-structure constant from 3 telescopes
- Subaru Telescope limits on cosmological variations in the fine-structure constant
- Fundamental physics with ESPRESSO: Precise limit on variations in the fine-structure constant towards the bright quasar HE 05154414
- Constraining the Variation of the Fine Structure Constant with Observations of Narrow Quasar Absorption Lines
- Evolution of the fine-structure constant in runaway dilaton models
- Status of MICROSCOPE, a mission to test the Equivalence Principle in space
- Euclid: constraining dark energy coupled to electromagnetism using astrophysical and laboratory data
- Primordial nucleosynthesis with varying fundamental constants: Solutions to the Lithium problem and the Deuterium discrepancy
- Kinetically coupled dark energy
- Disformal Dark Matter
- Lagrangian description of cosmic fluids: mapping dark energy into unified dark energy
- Varying fine-structure constant cosmography
- Dark matter relic density from conformally or disformally coupled light scalars
- Current and future constraints on Bekenstein-type models for varying couplings
- Fine-structure constant constraints on Bekenstein-type models
- Dissecting kinetically coupled quintessence: phenomenology and observational tests
- Direct couplings of mimetic dark matter and their cosmological effects
- Fundamental physics with ESPRESSO: Constraints on Bekenstein and dark energy models from astrophysical and local probes
- Varying Alpha Generalized Dirac-Born-Infeld Models
Cited by in corpus (4)
- The CosmoVerse White Paper: Addressing observational tensions in cosmology with systematics and fundamental physics
- Incompatibility of fine-structure constant variations at recombination with local observations
- Relaxing cosmological constraints on current neutrino masses
- Scaling solutions in three-form cosmology