FBQ 0951+2635: time delay and structure of the main lensing galaxy

Fuente: arXiv
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Main Authors: Shalyapin, Vyacheslav N., Goicoechea, Luis J., Ruiz-Hinojosa, Eleana
Format: Preprint
Published: 2024
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author Shalyapin, Vyacheslav N.
Goicoechea, Luis J.
Ruiz-Hinojosa, Eleana
author_facet Shalyapin, Vyacheslav N.
Goicoechea, Luis J.
Ruiz-Hinojosa, Eleana
contents As there is a long-standing controversy over the time delay between the two images of the gravitationally lensed quasar FBQ 0951+2635, we combined early and new optical light curves to robustly measure a delay of 13.5 +/- 1.6 d (1sigma interval). The new optical records covering the last 17 yr were also used to trace the long-timescale evolution of the microlensing variability. Additionally, the new time delay interval and a relatively rich set of further observational constraints allowed us to discuss the mass structure of the main lensing galaxy at redshift 0.26. This lens system is of particular interest because the external shear from secondary gravitational deflectors is relatively low, but the external convergence is one of the highest known. When modelling the galaxy as a singular power-law ellipsoid without hypotheses/priors on the power-law index, ellipticity and position angle, we demonstrated that its mass profile is close to isothermal, and there is good alignment between mass and near-IR light. We also recovered the true mass scale of the galaxy. Finally, it is worth mentioning that a constant mass-to-light ratio model also worked acceptably well.
format Preprint
id arxiv_https___arxiv_org_abs_2412_09435
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle FBQ 0951+2635: time delay and structure of the main lensing galaxy
Shalyapin, Vyacheslav N.
Goicoechea, Luis J.
Ruiz-Hinojosa, Eleana
Astrophysics of Galaxies
As there is a long-standing controversy over the time delay between the two images of the gravitationally lensed quasar FBQ 0951+2635, we combined early and new optical light curves to robustly measure a delay of 13.5 +/- 1.6 d (1sigma interval). The new optical records covering the last 17 yr were also used to trace the long-timescale evolution of the microlensing variability. Additionally, the new time delay interval and a relatively rich set of further observational constraints allowed us to discuss the mass structure of the main lensing galaxy at redshift 0.26. This lens system is of particular interest because the external shear from secondary gravitational deflectors is relatively low, but the external convergence is one of the highest known. When modelling the galaxy as a singular power-law ellipsoid without hypotheses/priors on the power-law index, ellipticity and position angle, we demonstrated that its mass profile is close to isothermal, and there is good alignment between mass and near-IR light. We also recovered the true mass scale of the galaxy. Finally, it is worth mentioning that a constant mass-to-light ratio model also worked acceptably well.
title FBQ 0951+2635: time delay and structure of the main lensing galaxy
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2412.09435