Probe the gravitational constant variation via the propagation of gravitational waves
arXiv:2308.00233 · doi:10.1016/j.physletb.2023.138350
Abstract
The gravitational constant variation means the breakdown of the strong equivalence principle. As the cornerstone of general relativity, the validity of general relativity can be examined by studying the gravitational constant variation. Such variations have the potential to affect both the generation and propagation of gravitational waves. In this paper, our focus lies on the effect of gravitational constant variation specifically on the propagation of gravitational waves. We employ two analytical methods, namely based on the Fierz-Pauli action and the perturbation of Einstein-Hilbert action around Minkowski spacetime, both leading to the the same gravitational wave equation. By solving this equation, we find the effects of gravitational constant variation on gravitational wave propagation. The result is consistent with previous investigations based on Maxwell-like equations for gravitational waves. Notably, we find that small variations in the gravitational constant result in an amplitude correction at the leading order and a phase correction at the sub-leading order for gravitational waves. These results provide valuable insights for probing gravitational constant variation and can be directly applied to gravitational wave data analysis.
9 pages, 1 figure
References in corpus (5)
- Dark Energy after GW170817: dead ends and the road ahead
- Implications of the Neutron Star Merger GW170817 for Cosmological Scalar-Tensor Theories
- Fierz-Pauli theory reloaded: from a theory of a symmetric tensor field to linearized massive gravity
- Constraining the evolution of Newton's constant with slow inspirals observed from spaceborne gravitational-wave detectors
- The effect of the gravitational constant variation on the propagation of gravitational waves
Cited by in corpus (6)
- Constraints on parity and Lorentz violations in gravity from GWTC-3 through a parametrization of modified gravitational wave propagations
- Generalized Entropy Implies Varying-G: Horizon Area Dependent Field Equations and Black Hole-Cosmology Coupling
- Addressing the DESI DR2 Phantom-Crossing Anomaly and Enhanced Tension with Reconstructed Scalar-Tensor Gravity
- Constraining the modified friction in gravitational wave propagation with precessing black hole binaries
- Effective Dynamics of Loop Quantum Kaluza-Klein Cosmology
- Gravitational-wave constraints on noncommutative spacetime from GW190814