On the waveforms of gravitationally lensed gravitational waves
arXiv:1702.04724
Abstract
Strong lensing by intervening galaxies can produce multiple images of gravitational waves from sources at cosmological distances. These images acquire additional phase-shifts as the over-focused wavefront passes through itself along the line of sight. Time domain waveforms of Type-II images (associated with saddle points of the time delay) exhibit a non-trivial distortion from the unlensed waveforms. This phenomenon is in addition to the usual frequency-independent magnification, and happens even in the geometric limit where the wavelength is much shorter than the deflector's gravitational length scale. Similarly, Type-III images preserve the original waveform's shape but exhibit a sign flip. We show that for non-precessing binaries undergoing circular inspiral and merger, these distortions are equivalent to rotating the line of sight about the normal to the orbital plane by (Type II) and (Type III). This effect will enable us to distinguish between the different topological types among a set of multiple images, and give us valuable insight into the lens model. Furthermore, we show that for eccentric binaries, the waveform of a Type-II image is distorted in a manner that is inequivalent to a change of the source's orbital parameters.
5 pages, 4 figures, comments welcome
Cited by in corpus (34)
- Search for gravitational lensing signatures in LIGO-Virgo binary black hole events
- 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
- Gravitational Lensing of Gravitational Waves: Effect of Microlens Population in Lensing Galaxies
- Beyond the detector horizon: Forecasting gravitational-wave strong lensing
- Stellar-mass microlensing of gravitational waves
- 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
- The last migration trap of compact objects in AGN accretion disc
- Bayesian statistical framework for identifying strongly lensed gravitational-wave signals
- Strongly Lensed Transient Sources: A Review
- Possible Causes of False General Relativity Violations in Gravitational Wave Observations
- Probing the nature of dark matter via gravitational waves lensed by small dark matter halos
- Rapid Identification of Strongly Lensed Gravitational-Wave Events with Machine Learning
- Lensed or not lensed: Determining lensing magnifications for binary neutron star mergers from a single detection
- Improved statistic to identify strongly lensed gravitational wave events
- Event rate predictions of strongly lensed gravitational waves with detector networks and more realistic templates
- Exploring the Impact of Microlensing on Gravitational Wave Signals: Biases, Population Characteristics, and Prospects for Detection
- Modified gravitational wave propagation with higher modes and its degeneracies with lensing
- On the detection and precise localisation of merging black holes events through strong gravitational lensing
- Lensing magnification: gravitational waves from coalescing stellar-mass binary black holes
- Multi-messenger Gravitational Lensing
- GLANCE -- Gravitational Lensing Authenticator using Non-Modelled Cross-Correlation Exploration of Gravitational Wave Signals
- What is the nature of GW230529? An exploration of the gravitational lensing hypothesis
- False positives for gravitational lensing: the gravitational-wave perspective
- Associating fast radio bursts with compact binary mergers via gravitational lensing
- Bounds on the charge of the graviton using gravitational wave observations
- Cosmology and the Early Universe
- TESLA-X: An effective method to search for sub-threshold lensed gravitational waves with a targeted population model
- Schwarzschild Lensing From Geodesic Deviation
- Uncovering faint lensed gravitational-wave signals and reprioritizing their follow-up analysis using galaxy lensing forecasts with detected counterparts
- Gravitational wave lensing: probing Fuzzy Dark Matter with LISA
- Gravitational wave propagation beyond general relativity: waveform distortions and echoes