The status of varying constants: a review of the physics, searches and implications
arXiv:1709.02923 · doi:10.1088/1361-6633/aa860e
Abstract
The observational evidence for the recent acceleration of the universe demonstrates that canonical theories of cosmology and particle physics are incomplete---if not incorrect---and that new physics is out there, waiting to be discovered. A key task for the next generation of laboratory and astrophysical facilities is to search for, identify and ultimately characterize this new physics. Here we highlight recent developments in tests of the stability of nature's fundamental couplings, which provide a direct handle on new physics: a detection of variations will be revolutionary, but even improved null results provide competitive constraints on a range of cosmological and particle physics paradigms. A joint analysis of all currently available data shows a preference for variations of and at about the two-sigma level, but inconsistencies between different sub-sets (likely due to hidden systematics) suggest that these statistical preferences need to be taken with caution. On the other hand, these measurements strongly constrain Weak Equivalence Principle violations. Plans and forecasts for forthcoming studies with facilities such as ALMA, ESPRESSO and the ELT, which should clarify these issues, are also discussed, and synergies with other probes are briefly highlighted. The goal is to show how a new generation of precision consistency tests of the standard paradigm will soon become possible.
Invited review for Reports on Progress in Physics (49 pages, 6 figures, 11 tables; submitted 24 January 2017, accepted 14 August 2017)
References in corpus (51)
- 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
- A laser frequency comb that enables radial velocity measurements with a precision of 1 cm s
- Extended Limber Approximation
- Improved limit on a temporal variation of from comparisons of Yb and Cs atomic clocks
- Environmental Dependence of Masses and Coupling Constants
- Testing the general relativistic ''no-hair'' theorems using the galactic center black hole SgrA*
- Cosmic dynamics in the era of Extremely Large Telescopes
- Stability of the proton-to-electron mass ratio
- Coupled Variations of Fundamental Couplings and Primordial Nucleosynthesis
- Strong Limit on a Variable Proton-to-Electron Mass Ratio from Molecules in the Distant Universe
- Improved tests of Local Position Invariance using 87Rb and 133Cs fountains
- Nuclear clocks based on resonant excitation of gamma-transitions
- Impact of instrumental systematic errors on fine-structure constant measurements with quasar spectra
- Phenomenology of the Equivalence Principle with Light Scalars
- Time-variability of alpha from realistic models of Oklo reactors
- UVES radial velocity accuracy from asteroid observations. Implications for the fine structure constant variability
- 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
- Breaking of the equivalence principle in the electromagnetic sector and its cosmological signatures
- Bounds on the fine structure constant variability from FeII absorption lines in QSO spectra
- First constraint on cosmological variation of the proton-to-electron mass ratio from two independent telescopes
- The Gaia DR1 Mass-Radius Relation for White Dwarfs
- Tests of the CMB temperature-redshift relation, CMB spectral distortions and why adiabatic photon production is hard
- The CO A-X System for Constraining Cosmological Drift of the Proton-Electron Mass Ratio
- Constraining the Variation of the Fine Structure Constant with Observations of Narrow Quasar Absorption Lines
- The Wall of Fundamental Constants
- Evolution of the fine-structure constant in runaway dilaton models
- A constraint on a varying proton--electron mass ratio 1.5 billion years after the Big Bang
- Constraining Variations in the Fine Structure Constant in the presence of Early Dark Energy
- Quintessence in a quandary: prior dependence in dark energy models
- Variability of the proton-to-electron mass ratio on cosmological scales
- Status of MICROSCOPE, a mission to test the Equivalence Principle in space
- Stability of fundamental couplings: a global analysis
- Varying couplings in the early universe: correlated variations of and
- Limits on a Gravitational Field Dependence of the Proton--Electron Mass Ratio from H in White Dwarf Stars
- Fundamental cosmology in the E-ELT era: The status and future role of tests of fundamental coupling stability
- Consistency tests of the stability of fundamental couplings and unification scenarios
- Probing unification scenarios with atomic clocks
- Fine-structure constant constraints on dark energy
- Sensitivity of the H3O+ inversion-rotational spectrum to changes in m_e/m_p
- Dark energy constraints from ESPRESSO tests of the stability of fundamental couplings
- Stretching and Kibble scaling regimes for Hubble-damped defect networks
- Oklo reactors and implications for nuclear science
- Runaway Domain Wall and Space-time Varying alpha
- Fundamental Cosmology from Precision Spectroscopy: I. Varying Couplings
- Further consistency tests of the stability of fundamental couplings
- Fine-structure constant constraints on Bekenstein-type models
- Current and future constraints on Bekenstein-type models for varying couplings
- Cosmological and astrophysical constraints on tachyon dark energy models
- Fundamental Cosmology from Precision Spectroscopy: II. Synergies with supernovae
Cited by in corpus (72)
- ESPRESSO@VLT -- On-sky performance and first results
- Teleparallel Gravity: From Theory to Cosmology
- The Olympics: A fair ranking of proposed models
- Extended Gravity Cosmography
- Is the Observable Universe Consistent with the Cosmological Principle?
- Improved limits for violations of local position invariance from atomic clock comparisons
- Roadmap towards the redefinition of the second
- Do we have any hope of detecting scattering between dark energy and baryons through cosmology?
- Fundamental physics with ESPRESSO: Precise limit on variations in the fine-structure constant towards the bright quasar HE 05154414
- Primordial nucleosynthesis with varying fundamental constants: Improved constraints and a possible solution to the Lithium problem
- A new era of fine structure constant measurements at high redshift
- The minimally extended Varying Speed of Light (meVSL)
- Varying fundamental constants principal component analysis: additional hints about the Hubble tension
- Euclid: constraining dark energy coupled to electromagnetism using astrophysical and laboratory data
- Using the cosmological recombination radiation to probe early dark energy and fundamental constant variations
- Primordial nucleosynthesis with varying fundamental constants: Solutions to the Lithium problem and the Deuterium discrepancy
- The cosmological evolution condition of the Planck constant in the varying speed of light models through adiabatic expansion
- Varying fine-structure constant cosmography
- Cosmological bound on neutrino masses in the light of tension
- Thomson scattering: One rate to rule them all
- Current and future constraints on extended Bekenstein-type models for a varying fine-structure constant
- Consistency of local and astrophysical tests of the stability of fundamental constants
- Viscosity and diffusion in life processes and tuning of fundamental constants
- A steady-state magneto-optical trap of fermionic strontium on a narrow-line transition
- Constraining a possible time-variation of the speed of light along with the fine-structure constant using strong gravitational lensing and Type Ia supernovae observations
- Probing the time variation of fine structure constant using galaxy clusters and quintessence model
- Primordial nucleosynthesis with varying fundamental constants: Degeneracies with cosmological parameters
- Diatomic rovibronic transitions as potential probes for proton-to-electron mass ratio across cosmological time
- Variation of the fine structure constant in the light of recent helium abundance measurement
- Fundamental Physics with ESPRESSO, Constraining a simple parametrisation for varying
- Constraints on extended Bekenstein models from cosmological, astrophysical, and local data
- Runaway dilaton models: improved constraints from the full cosmological evolution
- Probing Galactic variations in the fine-structure constant using solar twin stars: systematic errors
- A search for the fine-structure constant evolution from fast radio bursts and type Ia supernovae data
- Varying alpha, blinding, and bias in existing measurements
- Fundamental physics with ESPRESSO: Constraints on Bekenstein and dark energy models from astrophysical and local probes
- Variational Vibrational States of Methanol (12D)
- Incompatibility of fine-structure constant variations at recombination with local observations
- Constraining fundamental parameters in modified gravity using Gaia-DR2 massive white dwarf observation
- Measuring the speed of light with cosmological observations: current constraints and forecasts
- Distinguishing freezing and thawing dark energy models through measurements of the fine-structure constant
- Coupling quintessence kinetics to electromagnetism
- Non-parametric reconstruction of the fine structure constant with galaxy clusters
- Constraining Fundamental Constants with Fast Radio Bursts: Unveiling the Role of Energy Scale
- Fundamental physical constants: current results in search for variations and their description
- Fundamental cosmology from ANDES precision spectroscopy
- Fine-structure constant constraints on late-time dark energy transitions
- Variation of fundamental constants and white dwarfs
- Probing Galactic variations in the fine-structure constant using solar twin stars: methodology and results
- Galaxy clusters, cosmic chronometers and the Einstein equivalence principle
- The Mystery of Alpha and the Isotopes
- Quantum Sensing Using Atomic Clocks for Nuclear and Particle Physics
- Spectra of Ni V and Fe V in the Vacuum Ultraviolet
- Is the parameter of QCD constant?
- An investigation of a varying G through Strong Lensing and SNe Ia observations
- Measuring the Time Variation of the Fine-structure Constant with Quasars Detected by LAMOST
- Effect of temperature on measurement of fundamental constants using white dwarfs in Gaia-EDR3 survey
- The dynamics of vacuum, gravity and matter: Implications on the fundamental constants
- A model for time-evolution of coupling constants
- Search for Variations of Fundamental Constants
- The radiatively corrected Kaluza-Klein masses in aether compactification
- Fundamental physical constants, operation of physical phenomena and entropy increase
- A mechanism to generate varying speed of light via Higgs-dilaton coupling: Theory and cosmological applications
- Varying Alpha Generalized Dirac-Born-Infeld Models
- A sub-ppm upper limit on the cosmological variations of the fine structure constant alpha
- New analysis of SNeIa Pantheon Catalog: Variable speed of light as an alternative to dark energy
- Refining fundamental constants with white dwarfs: machine learning informed constraints on fine-structure constant and proton-to-electron mass ratio
- Varying fundamental constants cosmography
- The fine structure constant: a review of measurement results and possible space-time variations
- Revisiting the Constancy of the Speed of Light: Galaxy Cluster Mass Bias Implications
- A speed limit on tachyon fields from cosmological and fine-structure data
- A model-independent test of speed of light variability with cosmological observations