Eikonal gravitational-wave lensing in Einstein-aether theory
arXiv:2404.07782 · doi:10.1103/jrsp-1xll
Abstract
Einstein-aether theory provides a model to test the validity of local Lorentz invariance in gravitational interactions. The speed of gravitational waves as measured from the binary neutron star event GW170817 sets stringent limits on Einstein-aether theory, but only on a combination of the theory's free parameters. For this reason, a significant part of the theory's parameter space remains unconstrained by observations. Motivated by this, we explore the propagation of gravitational waves in Einstein-aether theory over an inhomogeneous background (i.e., gravitational wave lensing) as a potential mechanism to break the degeneracies between the theory's free parameters, and hence enable new constraints on the theory to be obtained. We reduce our analysis to gravitational waves that pass far from the lens' center and short wavelength signals, both compared to the lens' gravitational radius (eikonal limit). By applying these approximations and bringing the field equations into the form of the so-called kinetic matrix and applying a formalism known as the propagation eigenstate framework, we find that the speed of gravitational waves is modified by inhomogeneities in the aether field. However, the modification is common to both gravitational polarizations and vanishes in the limit in which gravitational waves propagate with luminal speed. This lens-dependent gravitational wave speed contrasts with the lens-induced birefringence observed in other theories beyond general relativity, like Horndeski's theory. While the potential to improve tests based on gravitational-wave speed is limited, our formalism sets the basis to fully describe signal propagation over inhomogeneous spacetimes in Einstein-aether theory and other extensions of general relativity.
20 pages plus appendices, 4 figures. Matches published version
References in corpus (82)
- GW170817: Observation of Gravitational Waves from a Binary Neutron Star Inspiral
- Modified Gravity and Cosmology
- Multi-messenger Observations of a Binary Neutron Star Merger
- Gravitational Waves and Gamma-rays from a Binary Neutron Star Merger: GW170817 and GRB 170817A
- Quantum Gravity at a Lifshitz Point
- The Galaxy in Context: Structural, Kinematic and Integrated Properties
- The NANOGrav 15-year Data Set: Evidence for a Gravitational-Wave Background
- Testing General Relativity with Present and Future Astrophysical Observations
- 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
- Modern tests of Lorentz invariance
- 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
- Gravity with a dynamical preferred frame
- Strong constraints on cosmological gravity from GW170817 and GRB 170817A
- Dark Energy after GW170817 and GRB170817A
- Tests of General Relativity with Binary Black Holes from the second LIGO-Virgo Gravitational-Wave Transient Catalog
- Implications of the Neutron Star Merger GW170817 for Cosmological Scalar-Tensor Theories
- Tests of General Relativity with GW170817
- A healthy extension of Horava gravity
- Einstein-Aether Waves
- Wave Effects in Gravitational Lensing of Gravitational Waves from Chirping Binaries
- Cosmology with the Laser Interferometer Space Antenna
- Breaking a Dark Degeneracy with Gravitational Waves
- Lorentz-Violating Vector Fields Slow the Universe Down
- Concepts and status of Chinese space gravitational wave detection projects
- Confirmation of general relativity on large scales from weak lensing and galaxy velocities
- Anisotropic stress as signature of non-standard propagation of gravitational waves
- Modified theories of Gravity: Why, How and What?
- Graviton Mass Bounds
- Extended Horava gravity and Einstein-aether theory
- Constraining the New Aether: Gravitational Cherenkov Radiation
- Constraints on Einstein-Æther theory and Horava gravity from binary pulsar observations
- Probing non-tensorial polarizations of stochastic gravitational-wave backgrounds with ground-based laser interferometers
- Speed of Gravitational Waves and the Fate of Scalar-Tensor Gravity
- Post-Newtonian parameters and constraints on Einstein-aether theory
- GW170817 Falsifies Dark Matter Emulators
- Dark Energy in light of Multi-Messenger Gravitational-Wave astronomy
- Probing the theory of gravity with gravitational lensing of gravitational waves and galaxy surveys
- Black Holes in Einstein-Aether Theory
- A precise extragalactic test of General Relativity
- Constraints on Einstein-aether theory after GW170817
- Speed of Gravitational Waves from Strongly Lensed Gravitational Waves and Electromagnetic Signals
- The fate of large-scale structure in modified gravity after GW170817 and GRB170817A
- Static post-Newtonian equivalence of GR and gravity with a dynamical preferred frame
- Spherical Solutions in Einstein-Aether Theory: Static Aether and Stars
- Testing the speed of gravitational waves over cosmological distances with strong gravitational lensing
- Gravitational waves in Einstein-æther and generalized TeVeS theory after GW170817
- Waveform of gravitational waves in the general parity-violating gravities
- Strong field effects on binary systems in Einstein-aether theory
- New tests of local Lorentz invariance of gravity with small-eccentricity binary pulsars
- Neutron stars in Einstein-aether theory
- A new limit on local Lorentz invariance violation of gravity from solitary pulsars
- Gravitational wave lensing beyond general relativity: birefringence, echoes and shadows
- Radiation Damping in Einstein-Aether Theory
- Testing the nature of gravitational-wave polarizations using strongly lensed signals
- Gravitational wave lensing as a probe of halo properties and dark matter
- Spontaneous Lorentz Violation and the Long-Range Gravitational Preferred-Frame Effect
- Lensing of gravitational waves: efficient wave-optics methods and validation with symmetric lenses
- Energy in the Einstein-Aether Theory
- Tests of Gravitational-Wave Birefringence with the Open Gravitational-Wave Catalog
- Propagation of polarized gravitational waves
- Gravitational Wave Oscillations in Bigravity
- Pure polarization test of GW170814 and GW170817 using waveforms consistent with modified theories of gravity
- Scalar and tensor gravitational waves
- New binary pulsar constraints on Einstein-æther theory after GW170817
- Non-standard gravitational waves imply gravitational slip: on the difficulty of partially hiding new gravitational degrees of freedom
- Probing lens-induced gravitational-wave birefringence as a test of general relativity
- Strong Lensing by Galaxies
- Lensing of Gravitational Waves as a Novel Probe of Graviton Mass
- Scalar-tensor mixed polarization search of gravitational waves
- Well-posed Cauchy formulation for Einstein-æther theory
- OGRe: An Object-Oriented General Relativity Package for Mathematica
- Frequency- and polarization-dependent lensing of gravitational waves in strong gravitational fields
- Gravitational wave constraints on Einstein-æther theory with LIGO/Virgo data
- Probing general relativistic spin-orbit coupling with gravitational waves from hierarchical triple systems
- Signatures of dark and baryonic structures on weakly lensed gravitational waves
- Compact binary systems in Einstein-Aether gravity: Direct integration of the relaxed field equations to 2.5 post-Newtonian order
- Scalar polarization window in gravitational-wave signals
- Probing charge of compact objects with gravitational microlensing of gravitational waves
- Strong lensing of gravitational waves with modified propagation