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Learning about the structure of strongly lensed AGNs from their lightcurves
Sluse, Dominique
2022In Proceedings of the International Astronomical Union, 18 (S381), p. 141 - 146
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Keywords :
gravitational lensing; micro-lensing; Astronomy and Astrophysics; Space and Planetary Science
Abstract :
[en] The lightcurves of strongly lensed AGNs get distorted due to gravitational microlensing, which differently magnifies the emission regions of AGNs depending on their size. This effect has been used to measure the size of the AGN accretion disc, but high photometric accuracy lightcurves reveal coherent variations on short time-scales that are not expected by standard accretion disc models. I show that this signal can be produced by emission from the Broad Line Region (BLR) but also by extended (diffuse) continuum emission. I explain how these features can be used to measure the size of the BLR but also reveal additional sources of emission. The multi-colour lightcurves of lensed AGNs, such as those to be obtained with the Vera Rubin Observatory, may become a powerful new tool to reveal the sub-parsec structure of AGNs, and shed light on elusive AGN emitting regions such as the one producing diffuse continuum emission.
Disciplines :
Space science, astronomy & astrophysics
Author, co-author :
Sluse, Dominique  ;  Université de Liège - ULiège > Département d'astrophysique, géophysique et océanographie (AGO)
Language :
English
Title :
Learning about the structure of strongly lensed AGNs from their lightcurves
Publication date :
04 December 2022
Event name :
Strong Gravitational Lensing in the Era of Big Data
Event organizer :
H. Stacey, A. Sonnenfeld and C. Grillo - International Astronomical Union
Event place :
Italy
Event date :
19-23 June 2023
Audience :
International
Journal title :
Proceedings of the International Astronomical Union
ISSN :
1743-9213
eISSN :
1743-9221
Publisher :
Cambridge University Press
Volume :
18
Issue :
S381
Pages :
141 - 146
Peer reviewed :
Peer Reviewed verified by ORBi
Available on ORBi :
since 02 January 2025

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