Polarization modes of gravitational waves in Quadratic Gravity
arXiv:1910.04800 · doi:10.1103/PhysRevD.100.124007
Abstract
The observation of the inspiral and merger of compact binaries by the LIGO-Virgo collaboration has allowed for new tests of Einstein's theory in the extreme gravity regime, where gravitational interactions are simultaneously strong, non-linear, and dynamical. Theories beyond Einstein's can also be constrained by detecting the polarization modes of gravitational waves. In this paper, we show that dynamical Chern-Simons and Einstein-dilaton-Gauss-Bonnet gravity cannot be differentiated from general relativity based on the detection of polarization modes alone. To prove this result, we use the Newman-Penrose method and an irreducible decomposition method to find that only the tensorial modes can be detected in both these theories.
14 pages, 1 figure, Submitted to PRD
References in corpus (7)
- The Confrontation between General Relativity and Experiment
- Probing non-tensorial polarizations of stochastic gravitational-wave backgrounds with ground-based laser interferometers
- The Barbero-Immirzi Parameter as a Scalar Field: K-Inflation from Loop Quantum Gravity?
- The Tensor-Vector-Scalar theory and its cosmology
- How do Black Holes Spin in Chern-Simons Modified Gravity?
- Effective Gravitational Wave Stress-energy Tensor in Alternative Theories of Gravity
- Massive gravitational waves in Chern-Simons modified gravity