Frequency- and polarization-dependent lensing of gravitational waves in strong gravitational fields
arXiv:2209.06459 · doi:10.1103/PhysRevD.109.124045
Abstract
The propagation of gravitational waves can be described in terms of null geodesics by using the geometrical optics approximation. However, at large but finite frequencies the propagation is affected by the spin-orbit coupling corrections to geometrical optics, known as the gravitational spin Hall effect. Consequently, gravitational waves follow slightly different frequency- and polarization-dependent trajectories, leading to dispersive and birefringent phenomena. We study the potential for detecting the gravitational spin Hall effect in hierarchical triple black hole systems, consisting of an emitting binary orbiting a more massive body acting as a gravitational lens. We calculate the difference in time of arrival with respect to the geodesic propagation and find that it follows a simple power-law dependence on frequency with a fixed exponent. We calculate the gravitational spin Hall-corrected waveform and its mismatch with respect to the original waveform. The waveform carries a measurable imprint of the strong gravitational field if the source, lens, and observer are sufficiently aligned, or for generic observers if the source is close enough to the lens. We present constraints on dispersive time delays from GWTC-3, translated from limits on Lorentz invariance violation. Finally, we address the sensitivity of current and future ground detectors to dispersive lensing. Our results demonstrate that the gravitational spin Hall effect can be detected, providing a novel probe of general relativity and the environments of compact binary systems.
References in corpus (36)
- Advanced LIGO
- GW190521: A Binary Black Hole Merger with a Total Mass of
- Properties and astrophysical implications of the 150 Msun binary black hole merger GW190521
- Geometrodynamics of Spinning Light
- Candidate Electromagnetic Counterpart to the Binary Black Hole Merger Gravitational Wave Event S190521g
- Model Waveform Accuracy Standards for Gravitational Wave Data Analysis
- Mind the gap: The location of the lower edge of the pair instability supernovae black hole mass gap
- Role of beam propagation in Goos-Hänchen and Imbert-Fedorov shifts
- Starbursts near supermassive black holes: young stars in the Galactic Center, and gravitational waves in LISA band
- Concepts and status of Chinese space gravitational wave detection projects
- Open data from the third observing run of LIGO, Virgo, KAGRA and GEO
- Geometrodynamics of polarized light: Berry phase and spin Hall effect in a gradient-index medium
- Modified geometrical optics of a smoothly inhomogeneous isotropic medium: the anisotropy, Berry phase, and the optical Magnus effect
- Spin-orbit interactions in black-hole binaries
- GW190521 may be an intermediate mass ratio inspiral
- Imaging the Supermassive Black Hole Shadow and Jet Base of M87 with the Event Horizon Telescope
- Fingerprints of binary black hole formation channels encoded in the mass and spin of merger remnants
- Evidence for an intermediate-mass black hole from a gravitationally lensed gamma-ray burst
- Gravitational wave lensing as a probe of halo properties and dark matter
- Lensing of gravitational waves: efficient wave-optics methods and validation with symmetric lenses
- Observability of lensing of gravitational waves from massive black hole binaries with LISA
- Propagation of polarized gravitational waves
- Ready-to-use Fourier domain templates for compact binaries inspiraling along moderately eccentric orbits
- Absorption of electromagnetic and gravitational waves by Kerr black holes: Shadows, superradiance and the spin-helicity effect
- The Effect of Thermal Torques on AGN Disc Migration Traps and Gravitational Wave Populations
- Wigner translations and the observer-dependence of the position of masslesss spinning particles
- Lensing or luck? False alarm probabilities for gravitational lensing of gravitational waves
- Semiclassical Dynamics of Dirac particles interacting with a Static Gravitational Field
- Detection and parameter estimation challenges of Type-II lensed binary black hole signals
- Probing lens-induced gravitational-wave birefringence as a test of general relativity
- GRB 200716C: Evidence for a Short Burst Being Lensed
- Semiclassical analysis of Dirac fields on curved spacetime
- Hunting for intermediate-mass black holes in globular clusters: an astrometric study of NGC 6441
- Spin Hall effects in the sky
- Can a binary neutron star merger in the vicinity of a supermassive black hole enable a detection of a post-merger gravitational wave signal?
- Spin Hall effects and the localization of massless spinning particles
Cited by in corpus (12)
- Probing general relativistic spin-orbit coupling with gravitational waves from hierarchical triple systems
- Spin wave optics for gravitational waves lensed by a Kerr black hole
- Constraining binary mergers in AGN disks using the non-observation of lensed gravitational waves
- Lensing and wave optics in the strong field of a black hole
- Gravitational wave memory and its effects on particles and fields
- Conserved quantities and integrability for massless spinning particles in general relativity
- Gravitational Lensing in the Kerr Spacetime: An Analytic Approach for Light and High-Frequency Gravitational Waves
- Constraining the environment of compact binary mergers with self-lensing signatures
- Quantum geometric tensors from sub-bundle geometry
- Eikonal gravitational-wave lensing in Einstein-aether theory
- Across the Universe: GW231123 as a magnified and diffracted black hole merger
- The effect of matter discreteness on gravitational wave propagation in post-geometrical optics