Strong gravity signatures in the polarization of gravitational waves
arXiv:1905.03943 · doi:10.1142/S0218271819440206
Abstract
General Relativity is a hugely successful description of gravitation. However, both theory and observations suggest that General Relativity might have significant classical and quantum corrections in the Strong Gravity regime. Testing the strong field limit of gravity is one of the main objectives of the future gravitational wave detectors. One way to detect strong gravity is through the polarization of gravitational waves. For quasi-normal modes of black-holes in General Relativity, the two polarisation states of gravitational waves have the same amplitude and frequency spectrum. Using the principle of energy conservation, we show that, the polarisations differ for modified gravity theories. We obtain a diagnostic parameter for polarization mismatch that provides a unique way to distinguish General Relativity and modified gravity theories in gravitational wave detectors.
Received Honourable mention in Gravity Research Foundation essay competition-2019
References in corpus (1)
Cited by in corpus (6)
- Modified theories of Gravity: Why, How and What?
- Analytical computation of quasi-normal modes of slowly-rotating black-holes in dCS gravity
- Infinitely degenerate exact Ricci-flat solutions in f(R) gravity
- Black hole quasinormal modes and isospectrality in Deser-Woodard nonlocal gravity
- Noncommutative quasinormal modes of Schwarzschild black hole
- Signatures of asymmetry: Gravitational wave memory and the parity violation