Constraining a possible variation of G with Type Ia supernovae
arXiv:1402.1534 · doi:10.1017/pasa.2014.9
Abstract
Astrophysical cosmology constrains the variation of Newton's Constant in a manner complementary to laboratory experiments, such as the celebrated lunar laser ranging campaign. Supernova cosmology is an example of the former and has attained campaign status, following planning by a Dark Energy Task Force in 2005. In this paper we employ the full SNIa dataset to the end of 2013 to set a limit on G variation. In our approach we adopt the standard candle delineation of the redshift distance relation. We set an upper limit on its rate of change |G dot / G| of 0.1 parts per billion per year over 9 Gyrs. By contrast lunar laser ranging tests variation of G over the last few decades. Conversely, one may adopt the laboratory result as a prior and constrain the effect of variable G in dark energy equation of state experiments to delta w < 0.02. We also examine the parameterization G ~ 1 + z. Its short expansion age conflicts with the measured values of the expansion rate and the density in a flat Universe. In conclusion, supernova cosmology complements other experiments in limiting G variation. An important caveat is that it rests on the assumption that the same mass of 56Ni is burned to create the standard candle regardless of redshift. These two quantities, f and G, where f is the Chandrasekhar mass fraction burned, are degenerate. Constraining f variation alone requires more understanding of the SNIa mechanism.
to appear in PASA
References in corpus (1)
Cited by in corpus (24)
- Pulsating white dwarfs: new insights
- Improved BBN Constraints on the Variation of the Gravitational Constant
- Type Ia supernovae, standardisable candles, and gravity
- Constraining the time variation of Newton's constant with gravitational-wave standard sirens and supernovae
- The minimally extended Varying Speed of Light (meVSL)
- Cosmological constraints on the gravitational constant
- Yoga Dark Energy: Natural Relaxation and Other Dark Implications of a Supersymmetric Gravity Sector
- Can varying the gravitational constant alleviate the tensions ?
- New cosmological constraints on gravity in light of full Planck-CMB and type Ia supernovae data
- A gravitational constant transition within cepheids as supernovae calibrators can solve the Hubble tension
- Time-dependent in Einstein's equations as an alternative to the cosmological constant
- Type Ia supernovae data with scalar-tensor gravity
- Variance of Newtonian constant from local gravitational acceleration measurements
- Alternate Models to Dark Energy
- A 5% measurement of the gravitational constant in the Large Magellanic Cloud
- Effects of a local physics change on the SH0ES determination of
- Scalar modes and the linearized Schwarzschild solution on a quantized FLRW space-time in Yang-Mills matrix models
- Scale-invariant dynamics in the Solar System
- Constraints on the minimally extended varying speed of light model using the Pantheon+ dataset
- Studying the variation of fundamental constants at the Cosmic Ray Extremely Distributed Observatory
- Solar System and Atomic Clock Bounds on Locally Coupled Swampland Scalars
- Investigating a Possible Variation of the Gravitational Constant Through Gas Mass Fraction Measurements and Type Ia Supernovae Observations
- Future Dark Energy Constraints from Atomic Clocks
- Cosmological Consequences of Varying Couplings in Gravity Action