From the 1 of 29 linked papers with an AI index.
12 citations · 16 across the 10 of their papers we have counts for
6 papers · 1 filter
Strong gravitational-wave lensing posterior odds
Otto A. Hannuksela, K. Haris, Justin Janquart +4
Like light, gravitational waves are gravitationally lensed by intervening massive astrophysical objects, such as galaxies, clusters, black holes, and stars, resulting in a variety…
Joint Bayesian Source and Lens Reconstruction for Multi-messenger Binary Black Holes
Laura Uronen, Tian Li, Justin Janquart +5
If a gravitational wave event is lensed by a cluster or galaxy in our line-of-sight, it is expected that its host galaxy would also be lensed. Therefore, connecting lensed gravitat…
Constraining binary mergers in AGN disks using the non-observation of lensed gravitational waves
Samson H. W. Leong, Justin Janquart, Aditya Kumar Sharma +3
The dense and dynamic environments within active galactic nuclei (AGN) accretion disks may serve as prolific birthplaces for binary black holes (BBHs) and one possible origin for s…
Multi-messenger Gravitational Lensing
Graham P. Smith, Tessa Baker, Simon Birrer +38
We introduce the rapidly emerging field of multi-messenger gravitational lensing - the discovery and science of gravitationally lensed phenomena in the distant universe through the…
Finding Black Holes: an Unconventional Multi-messenger
Laura E. Uronen, Tian Li, Justin Janquart +5
A rather clear problem has remained in black hole physics: localizing black holes. One of the recent theoretical ways proposed to identify black hole mergers' hosts is through mult…
Galaxy lens reconstruction based on strongly lensed gravitational waves: similarity transformation degeneracy and mass-sheet degeneracy
Jason S. C. Poon, Stefano Rinaldi, Justin Janquart +2
Gravitational wave (GW) galaxy lens reconstruction is a crucial step for many GW lensing science applications. However, dark siren GW lensing (i.e. lensed GW without observed elect…