Article (Scientific journals)
PS J2107−1611: A new wide-separation, quadruply imaged lensed quasar with flux ratio anomalies
Dux, Frédéric; Lemon, Cameron; Courbin, Frédéric et al.
2023In Astronomy and Astrophysics, 679, p. 4
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Keywords :
Space and Planetary Science; Astronomy and Astrophysics
Abstract :
[en] We report the discovery of PS J2107−1611, a fold-configuration 4.3″-separation quadruply lensed quasar with a bright lensed arc. It was discovered using a convolutional neural network on Pan-STARRS gri images of pre-selected quasar candidates with multiple nearby Pan-STARRS detections. Spectroscopic follow-up with EFOSC2 on the ESO 3.58 m New Technology Telescope reveals the source to be a quasar at z = 2.673, with the blended fold image pair showing deformed broad lines relative to the other images. The flux ratios measured from optical to near-infrared imaging in the Canada-France-Hawaii Telescope Legacy Survey, Pan-STARRS, the Legacy Surveys, and the Vista Hemisphere Survey are inconsistent with a smooth mass model as the fold pair images are ∼15 times too faint. Variability, time delay effects, and reddening are ruled out through multiple-epoch imaging and color information. The system is marginally resolved in the radio in the Very Large Array Sky Survey S-band, where it has a 10 mJy detection. The radio flux ratios are compatible with the smooth mass macromodel. This system offers a unique tool for future studies of quasar structure with strong and microlensing. A more detailed analysis of follow-up with JWST/MIRI, VLT/MUSE, VLT/ERIS, and data from the European Very Long Baseline Interferometer will be presented in a forthcoming paper.
Disciplines :
Space science, astronomy & astrophysics
Author, co-author :
Dux, Frédéric
Lemon, Cameron
Courbin, Frédéric
Sluse, Dominique  ;  Université de Liège - ULiège > Département d'astrophysique, géophysique et océanographie (AGO)
Smette, Alain
Anguita, Timo
Neira, Favio
Language :
English
Title :
PS J2107−1611: A new wide-separation, quadruply imaged lensed quasar with flux ratio anomalies
Publication date :
03 November 2023
Journal title :
Astronomy and Astrophysics
ISSN :
0004-6361
eISSN :
1432-0746
Publisher :
EDP Sciences
Volume :
679
Pages :
L4
Peer reviewed :
Peer Reviewed verified by ORBi
European Projects :
H2020 - 787886 - COSMICLENS - Cosmology with Strong Gravitational Lensing
Funders :
EU - European Union
Available on ORBi :
since 07 November 2023

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