Propagation and lensing of gravitational waves in Palatini gravity
arXiv:2312.09908 · doi:10.1103/PhysRevD.109.124014
Abstract
Accelerated expansion of the Universe prompted searches of modified gravity theory beyond general relativity, instead of adding a mysterious dark energy component with exotic physical properties. One such alternative gravity approach is metric-affine Palatini theory. By now routine gravitational wave detections have opened a promising avenue of searching for modified gravity effects. Future expected cases of strong lensing of gravitational waves will enhance this opportunity further. In this paper, we present a systematic study of the propagation and gravitational lensing of gravitational waves in Palatini gravity and compare it with general relativity. Using the WKB approximation we explore the geometric-optical limit of lensing and derive the corrections to the measured luminosity distance of the gravitational source. In addition, we study the lensing by the Singular Isothermal Sphere lens model and show that Palatini modifies the lensing potential and hence the deflection angle. Then we show that the lens model and chosen theory of gravity influences the rotation of the gravitational wave polarization plane through the deflection angle. To be more specific we discuss the gravity theory and find that the modifications comparing to general relativity are negligible if the upper bound of m suggested in the literature is adopted. However, this bound is not firmly established and can be updated in the future. Therefore, the results we obtained could be valuable for further metric-affine gravity vs. general relativity tests involving lensing of gravitational waves and comparison of luminosity distances measured from electromagnetic and gravitational wave sources.
References in corpus (51)
- GWTC-3: Compact Binary Coalescences Observed by LIGO and Virgo During the Second Part of the Third Observing Run
- The NANOGrav 15-year Data Set: Evidence for a Gravitational-Wave Background
- Search for an isotropic gravitational-wave background with the Parkes Pulsar Timing Array
- Science Case for the Einstein Telescope
- Searching for the nano-Hertz stochastic gravitational wave background with the Chinese Pulsar Timing Array Data Release I
- The second data release from the European Pulsar Timing Array III. Search for gravitational wave signals
- Dark Energy after GW170817: dead ends and the road ahead
- Strong constraints on cosmological gravity from GW170817 and GRB 170817A
- Palatini Approach to Modified Gravity: f(R) Theories and Beyond
- Implications of the Neutron Star Merger GW170817 for Cosmological Scalar-Tensor Theories
- Stellar structure models in modified theories of gravity: lessons and challenges
- Anisotropic stress as signature of non-standard propagation of gravitational waves
- Search for gravitational lensing signatures in LIGO-Virgo binary black hole events
- Violation of the Equivalence Principle in Modified Theories of Gravity
- Constraining the abundance of primordial black holes with gravitational lensing of gravitational waves at LIGO frequencies
- Strong gravitational lensing of gravitational waves from double compact binaries - perspectives for the Einstein Telescope
- Hydrogen atom in Palatini theories of gravity
- Curvature scalar instability in f(R) gravity
- Gravitational wave lensing beyond general relativity: birefringence, echoes and shadows
- Probing Dark Low-mass Halos and Primordial Black Holes with Frequency-dependent Gravitational Lensing Dispersions of Gravitational Waves
- Testing the nature of gravitational-wave polarizations using strongly lensed signals
- Post-Newtonian Hamiltonian description of an atom in a weak gravitational field
- Constraining cosmological parameters in FLRW metric with lensed GW+EM signals
- Minimum main sequence mass in quadratic Palatini gravity
- Palatini gravity in the solar system: post-Newtonian equations of motion and complete PPN parameters
- Light propagation in a homogeneous and anisotropic universe
- Implications of Palatini gravity for inflation and beyond
- Stability criterion for white dwarfs in Palatini gravity
- Gravitational wave propagation beyond geometric optics
- Gravitational waves and geometrical optics in scalar-tensor theories
- Early evolutionary tracks of low-mass stellar objects in modified gravity
- On Gravitational Waves in Spacetimes with a Nonvanishing Cosmological Constant
- The Perfect Hyperfluid of Metric-Affine Gravity: The Foundation
- Fermi gas and modified gravity
- Cooling process of brown dwarfs in Palatini f(R) gravity
- Lithium abundance is a gravitational model dependent quantity
- How does the Earth's rotation affect predictions of gravitational wave strong lensing rates?
- Emergence of dynamical dark energy from polynomial theory in Palatini formalism
- Inspiraling double compact object detection and lensing rate -- forecast for DECIGO and B-DECIGO
- Metric-affine gravity effects on terrestrial (exo-)planets profiles
- Metric-affine effects in crystallization processes of white dwarfs
- Gravitational-wave cosmological distances in scalar-tensor theories of gravity
- Jupiter and jovian (exo)-planets in Palatini gravity
- Normalized additional velocity distribution: testing the radial profile of dark matter halos and MOND
- Unveiling Phase Space Modifications: A Clash of Modified Gravity and the Generalized Uncertainty Principle
- Planetary seismology as a test of modified gravity proposals
- Cosmological constraints of Palatini gravity
- Constraining Palatini gravity with GR-independent equations of state for neutron stars
- Solar System Tests in Brans-Dicke and Palatini f(R)-theories
- The effective Equation of State in Palatini cosmology
- Palatini gravity tests in the weak field limit: Solar System, seismology and galaxies