Follow-up Analyses to the O3 LIGO-Virgo-KAGRA Lensing Searches
arXiv:2306.03827 · doi:10.1093/mnras/stad2909
Abstract
Along their path from source to observer, gravitational waves may be gravitationally lensed by massive objects. This results in distortions of the observed signal which can be used to extract new information about fundamental physics, astrophysics, and cosmology. Searches for these distortions amongst the observed signals from the current detector network have already been carried out, though there have as yet been no confident detections. However, predictions of the observation rate of lensing suggest detection in the future is a realistic possibility. Therefore, preparations need to be made to thoroughly investigate the candidate lensed signals. In this work, we present some of the follow-up analyses and strategies that could be applied to assess the significance of such events and ascertain what information may be extracted about the lens-source system from such candidate signals by applying them to a number of O3 candidate events, even if these signals did not yield a high significance for any of the lensing hypotheses. For strongly-lensed candidates, we verify their significance using a background of simulated unlensed events and statistics computed from lensing catalogs. We also look for potential electromagnetic counterparts. In addition, we analyse in detail a candidate for a strongly-lensed sub-threshold counterpart that is identified by a new method. For microlensing candidates, we perform model selection using a number of lens models to investigate our ability to determine the mass density profile of the lens and constrain the lens parameters. We also look for millilensing signatures in one of the lensed candidates. Applying these additional analyses does not lead to any additional evidence for lensing in the candidates that have been examined. However, it does provide important insight into potential avenues to deal with high-significance candidates in future observations.
29 pages, 27 figures
References in corpus (29)
- Cosmic Star Formation History
- GW190814: Gravitational Waves from the Coalescence of a 23 M Black Hole with a 2.6 M Compact Object
- Robust parameter estimation for compact binaries with ground-based gravitational-wave observations using the LALInference software library
- Properties and astrophysical implications of the 150 Msun binary black hole merger GW190521
- The Structure & Dynamics of Massive Early-type Galaxies: On Homology, Isothermality and Isotropy inside one Effective Radius
- Multipolar Effective-One-Body Waveforms for Precessing Binary Black Holes: Construction and Validation
- Search for gravitational lensing signatures in LIGO-Virgo binary black hole events
- General-relativistic precession in a black-hole binary
- What if LIGO's gravitational wave detections are strongly lensed by massive galaxy clusters?
- Observational signatures of microlensing in gravitational waves at LIGO/Virgo frequencies
- The BOSS Emission-Line Lens Survey. IV. : Smooth Lens Models for the BELLS GALLERY Sample
- Probing Dark Low-mass Halos and Primordial Black Holes with Frequency-dependent Gravitational Lensing Dispersions of Gravitational Waves
- Stellar-mass microlensing of gravitational waves
- Observability of lensing of gravitational waves from massive black hole binaries with LISA
- Constraining cosmological parameters in FLRW metric with lensed GW+EM signals
- Testing general relativity with gravitational waves: a reality check
- Lensing or luck? False alarm probabilities for gravitational lensing of gravitational waves
- Strong lensing as a giant telescope to localize the host galaxy of gravitational wave event
- On building a cluster watch-list for identifying strongly lensed supernovae, gravitational waves and kilonovae
- Exploring the hidden Universe: A novel phenomenological approach for recovering arbitrary gravitational-wave millilensing configurations
- Improved statistic to identify strongly lensed gravitational wave events
- 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
- Survey of Gravitationally-lensed Objects in HSC Imaging (SuGOHI). VIII. New galaxy-scale lenses from the HSC SSP
- The Return of GOLUM: Improving Distributed Joint Parameter Estimation for Strongly-Lensed Gravitational Waves
- Improving Detection of Gravitational wave Microlensing Using Repeated Signals Induced by Strong Lensing
- Testing general relativity with compact coalescing binaries: comparing exact and predictive methods to compute the Bayes factor
- Ordering the confusion: A study of the impact of lens models on gravitational-wave lensing detection capabilities
- denmarf: a Python package for density estimation using masked autoregressive flow
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- Possible Causes of False General Relativity Violations in Gravitational Wave Observations
- Detectability of lensed gravitational waves in matched-filtering searches
- Identifying strongly lensed gravitational waves through their phase consistency
- Unveiling Microlensing Biases in Testing General Relativity with Gravitational Waves
- Multi-messenger Gravitational Lensing
- Observational Signatures of Highly Magnified Gravitational Waves from Compact Binary Coalescence
- SLICK: Strong Lensing Identification of Candidates Kindred in gravitational wave data
- GLANCE -- Gravitational Lensing Authenticator using Non-Modelled Cross-Correlation Exploration of Gravitational Wave Signals
- Parameter estimation of microlensed gravitational waves with Conditional Variational Autoencoders
- What is the nature of GW230529? An exploration of the gravitational lensing hypothesis
- Can we discern millilensed gravitational-wave signals from signals produced by precessing binary black holes with ground-based detectors?
- Effects of Galaxy Cluster Structure on Lensed Gravitational Waves
- -GLANCE: A Novel Technique to Detect Chromatically and Achromatically Lensed Gravitational Wave Signals
- False positives for gravitational lensing: the gravitational-wave perspective
- Waveform systematics in identifying strongly gravitationally lensed gravitational waves: Posterior overlap method
- Probing charge of compact objects with gravitational microlensing of gravitational waves
- The First Model-Independent Chromatic Microlensing Search: No Evidence in the Gravitational Wave Catalog of LIGO-Virgo-KAGRA
- lenscat: a Public and Community-Contributed Catalog of Known Strong Gravitational Lenses
- Diffraction around caustics in gravitational wave lensing
- Uncovering faint lensed gravitational-wave signals and reprioritizing their follow-up analysis using galaxy lensing forecasts with detected counterparts
- Phase consistency test to identify type II strongly lensed gravitational wave signals using a single event
- Constraining the environment of compact binary mergers with self-lensing signatures
- Accelerated inference of microlensed gravitational waves with machine learning
- Discovering gravitational waveform distortions from lensing: A deep dive into GW231123
- Gravitational Lensing of Gravitational Waves from Astrophysical Sources: Theory, Detection, and Applications
- Probing cosmic strings via gravitational-wave lensing
- Strong-lensing rates of massive black hole binaries in LISA
- Gravitational lensing of gravitational waves: universal characteristics of strongly lensed memory waveforms
- Can Eccentric Binary Black Hole Signals Mimic Gravitational-Wave Microlensing?
- Parameter inference of millilensed gravitational waves using neural spline flows