Constraints on extended Bekenstein models from cosmological, astrophysical, and local data
arXiv:2207.03258 · doi:10.1103/PhysRevD.106.083522
Abstract
Searching for variations of nature's fundamental constants is a crucial step in our quest to go beyond our current standard model of fundamental physics. If they exist, such variations will be very likely driven by the existence of a new fundamental field. The Bekenstein model and its extensions introduce such a scalar field in a purely phenomenological way, inducing a variation of the fine-structure constant on cosmological scales. This theoretical framework is as simple and general as possible while still preserving all the symmetries of standard quantum electrodynamics. When allowing for couplings to the other sectors of the Universe, such as baryons, dark matter, and the cosmological constant, the Bekenstein model is expected to reproduce the low energy limits of several grand unification, quantum gravity, and higher dimensional theories. In this work, we constrain different versions of the Bekenstein model by confronting the full cosmological evolution of the field with an extensive set of astrophysical, cosmological, and local measurements. We show that couplings of the order of parts per million (ppm) are excluded for all the cases considered, imposing strong restrictions on theoretical frameworks aiming to deal with variations of the fine-structure constant.
Published in Phys. Rev. D. (last version include updated MICROSCOPE bound) and minor typographic corrections
References in corpus (13)
- The Confrontation between General Relativity and Experiment
- MICROSCOPE mission: final results of the test of the Equivalence Principle
- The status of varying constants: a review of the physics, searches and implications
- Phenomenology of the Equivalence Principle with Light Scalars
- 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
- Varying fundamental constants principal component analysis: additional hints about the Hubble tension
- Euclid: constraining dark energy coupled to electromagnetism using astrophysical and laboratory data
- Varying fine-structure constant cosmography
- Current and future constraints on extended Bekenstein-type models for a varying fine-structure constant
- Current and future constraints on Bekenstein-type models for varying couplings
- Fine-structure constant constraints on Bekenstein-type models
- Fundamental physics with ESPRESSO: Constraints on Bekenstein and dark energy models from astrophysical and local probes
Cited by in corpus (6)
- The CosmoVerse White Paper: Addressing observational tensions in cosmology with systematics and fundamental physics
- Runaway dilaton models: improved constraints from the full cosmological evolution
- Incompatibility of fine-structure constant variations at recombination with local observations
- Fundamental cosmology from ANDES precision spectroscopy
- Cosmological Tensions with Non-Extensive Entropic Cosmology: A Modified Stress-Energy Approach
- A speed limit on tachyon fields from cosmological and fine-structure data