Dark energy and Equivalence Principle constraints from astrophysical tests of the stability of the fine-structure constant
arXiv:1508.06157 · doi:10.1088/1475-7516/2015/08/047
Abstract
Astrophysical tests of the stability of fundamental couplings, such as the fine-structure constant , are becoming an increasingly powerful probe of new physics. Here we discuss how these measurements, combined with local atomic clock tests and Type Ia supernova and Hubble parameter data, constrain the simplest class of dynamical dark energy models where the same degree of freedom is assumed to provide both the dark energy and (through a dimensionless coupling, , to the electromagnetic sector) the variation. Specifically, current data tightly constrains a combination of and the present dark energy equation of state . Moreover, in these models the new degree of freedom inevitably couples to nucleons (through the dependence of their masses) and leads to violations of the Weak Equivalence Principle. We obtain indirect bounds on the Eötvös parameter that are typically stronger than the current direct ones. We discuss the model-dependence of our results and briefly comment on how the forthcoming generation of high-resolution ultra-stable spectrographs will enable significantly tighter constraints.
22 pages, JCAP (in press)
References in corpus (20)
- Observation of a new particle in the search for the Standard Model Higgs boson with the ATLAS detector at the LHC
- Observation of a new boson at a mass of 125 GeV with the CMS experiment at the LHC
- Phenomenology of the Equivalence Principle with Light Scalars
- Time-variability of alpha from realistic models of Oklo reactors
- The UVES Large Program for testing fundamental physics - III. Constraints on the fine-structure constant from 3 telescopes
- Bounds on the fine structure constant variability from FeII absorption lines in QSO spectra
- STEP and fundamental physics
- 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
- Dark Energy coupling with electromagnetism as seen from future low-medium redshift probes
- Constraining Variations in the Fine Structure Constant in the presence of Early Dark Energy
- Quintessence in a quandary: prior dependence in dark energy models
- Status of MICROSCOPE, a mission to test the Equivalence Principle in space
- Fundamental cosmology in the E-ELT era: The status and future role of tests of fundamental coupling stability
- Probing unification scenarios with atomic clocks
- Fine-structure constant constraints on dark energy
- Oklo reactors and implications for nuclear science
- Fundamental Cosmology from Precision Spectroscopy: I. Varying Couplings
- Fine-structure constant constraints on Bekenstein-type models
- Fundamental Cosmology from Precision Spectroscopy: II. Synergies with supernovae
Cited by in corpus (15)
- ESPRESSO@VLT -- On-sky performance and first results
- The status of varying constants: a review of the physics, searches and implications
- Search for a Variation of the Fine Structure around the Supermassive Black Hole in Our Galactic Center
- Stability of fundamental couplings: a global analysis
- Fine-structure constant constraints on dark energy: II. Extending the parameter space
- Consistency of local and astrophysical tests of the stability of fundamental constants
- Is there a connection between "dark" and "light" physics?
- Current and future constraints on Bekenstein-type models for varying couplings
- Cosmological and astrophysical constraints on tachyon dark energy models
- Physical quantities and spatial parameters in the complex octonion curved space
- Stochastic quintessence models: jerk and fine-structure variability constraints
- Impact of inhomogeneities on slowly rolling Quintessence: implications for the local variations of the fine-structure constant
- New tests of dark sector interactions from the full-shape galaxy power spectrum
- Avoiding unrealistic priors: the case of dark energy constraints from the time variation of the fine-structure constant
- On Generalized Theories of Varying Fine Structure Constant