Modified gravitational wave propagation with higher modes and its degeneracies with lensing
arXiv:2203.13252 · doi:10.1088/1475-7516/2022/08/016
Abstract
Low-energy alternatives to General Relativity (GR) generically modify the phase of gravitational waves (GWs) during their propagation. As detector sensitivities increase, it becomes key to understand how these modifications affect the GW higher modes and to disentangle possible degeneracies with astrophysical phenomena. We apply a general formalism -- the WKB approach -- for solving analytically wave propagation in the spatial domain with a modified dispersion relation (MDR). We compare this WKB approach to applying a stationary phase approximation (SPA) in the temporal domain with time delays associated to the group or particle velocity. To this end, we extend the SPA to generic signals with higher modes, keeping careful track of reference phases and arrival times. We find that the WKB approach coincides with the SPA using the group velocity, in agreement with the principles of wave propagation. We then explore the degeneracies between a GW propagation with an MDR and a strongly-lensed GW in GR, since the latter can introduce a frequency-independent phase shift which is not degenerate with source parameters in the presence of higher modes. We find that for a particular MDR there is an exact degeneracy for wave propagation, unlike with the SPA for particle propagation. For the other cases, we search for the values of the MDR parameters that minimize the and conclude that strongly-lensed GR GWs could be misinterpreted as GWs in modified gravity. Future MDR constraints with higher mode GWs should include the possibility of frequency-independent phase shifts, allowing for the identification of modified gravity and strong lensing distortions at the same time.
32 pages, 6 figures. Match the published version
References in corpus (24)
- GW170817: Observation of Gravitational Waves from a Binary Neutron Star Inspiral
- Advanced Virgo: a 2nd generation interferometric gravitational wave detector
- Advanced LIGO
- GW190814: Gravitational Waves from the Coalescence of a 23 M Black Hole with a 2.6 M Compact Object
- GWTC-3: Compact Binary Coalescences Observed by LIGO and Virgo During the Second Part of the Third Observing Run
- Laser Interferometer Space Antenna
- Tests of General Relativity with Binary Black Holes from the second LIGO-Virgo Gravitational-Wave Transient Catalog
- Model Waveform Accuracy Standards for Gravitational Wave Data Analysis
- 3-OGC: Catalog of gravitational waves from compact-binary mergers
- A Horizon Study for Cosmic Explorer: Science, Observatories, and Community
- New binary black hole mergers in the LIGO--Virgo O3a data
- Phase effects from strong gravitational lensing of gravitational waves
- Please repeat: Strong lensing of gravitational waves as a probe of compact binary and galaxy populations
- Identifying strong gravitational-wave lensing during the second observing run of Advanced LIGO and Advanced Virgo
- Identifying Type II Strongly Lensed Gravitational-Wave Images in Third-Generation Gravitational-Wave Detectors
- A fast and precise methodology to search for and analyse strongly lensed gravitational-wave events
- On the waveforms of gravitationally lensed gravitational waves
- Bayesian statistical framework for identifying strongly lensed gravitational-wave signals
- Measuring the propagation speed of gravitational waves with LISA
- Search for Lensed Gravitational Waves Including Morse Phase Information: An Intriguing Candidate in O2
- On the identification of individual gravitational wave image types of a lensed system using higher-order modes
- Lensing or luck? False alarm probabilities for gravitational lensing of gravitational waves
- Detection and parameter estimation challenges of Type-II lensed binary black hole signals
- Gravitational wave astronomy with LIGO and similar detectors in the next decade
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- Modified gravitational wave propagations in linearized gravity with Lorentz and diffeomorphism violations and their gravitational wave constraints
- Mitigating the effect of the population model uncertainty on the strong lensing Bayes factor using nonparametric methods
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- Multiple-scale analysis of modified gravitational-wave propagation