Search for variability in Newton's constant using local gravitational acceleration measurements
arXiv:2108.05012 · doi:10.1088/1361-6382/ac3c8c
Abstract
In a recent work, Dai (arXiv:2103.11157) searched for a variability in Newton's constant using the IGETS based gravitational acceleration measurements. However, this analysis, obtained from minimization, did not incorporate the errors in the gravitational acceleration measurements. We carry out a similar search with one major improvement, wherein we incorporate these aforementioned errors. To model any possible variation in the gravitational acceleration, we fit the data to four models: a constant value, two sinusoidal models, and finally, a linear model for the variation of gravitational acceleration. We find that none of the four models provides a good fit to the data, showing that there is no evidence for a periodicity or a linear temporal variation in the acceleration measurements. We then redid these analyses after accounting for an unknown intrinsic scatter. After this, we find that although a constant model is still favored over the sinusoidal models, the linear variation for is marginally preferred over a constant value, using information theory-based methods.
8 pages, 4 figures
References in corpus (8)
- Measurements of Newton's gravitational constant and the length of day
- Recent measurements of the gravitational constant as a function of time
- Hints of Modified Gravity in Cosmos and in the Lab?
- Median statistics estimates of Hubble and Newton's Constant
- Yet another test of Radial Acceleration Relation for galaxy clusters
- Variance of Newtonian constant from local gravitational acceleration measurements
- Frequentist model comparison tests of sinusoidal variations in measurements of Newton's gravitational constant
- Bayesian Analysis of time dependence of DAMA annual modulation amplitude