Weak lensing of strong lensing: beyond the tidal regime

Fuente: arXiv
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Autores principales: Duboscq, Théo, Hogg, Natalie B., Fleury, Pierre, Larena, Julien
Formato: Preprint
Publicado: 2024
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author Duboscq, Théo
Hogg, Natalie B.
Fleury, Pierre
Larena, Julien
author_facet Duboscq, Théo
Hogg, Natalie B.
Fleury, Pierre
Larena, Julien
contents The analysis of strong lensing images usually involves an external convergence and shear, which are meant to model the effect of perturbations along the line of sight, on top of the main lens. Such a description of line-of-sight perturbations supposes that the corresponding gravitational fields can be treated in the tidal regime. Going one step further introduces additional effects, known as flexion, which have been hitherto neglected in strong lensing. In this work, we build a minimal model for the line-of-sight flexion, which adds four new complex parameters to the lens model. Contrary to convergence and shear, the line-of-sight flexion cannot be projected onto the main lens plane. For a $Λ$CDM cosmology, we predict the typical line-of-sight flexion to be on the order of $10^{-3} \mathrm{arcsec}^{-1}$ on galactic scales. Neglecting its effect in lens modelling is found to bias the recovery of other parameters; in particular, the line-of-sight shear can be biased up to $2σ$. Accounting for the line-of-sight flexion in our minimal framework restores accuracy, at the the cost of degrading precision. With current imaging capabilities, the line-of-sight flexion is unlikely to be measurable on individual strong lensing images; it must therefore be considered a nuisance parameter rather than an observable in its own right.
format Preprint
id arxiv_https___arxiv_org_abs_2405_12091
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Weak lensing of strong lensing: beyond the tidal regime
Duboscq, Théo
Hogg, Natalie B.
Fleury, Pierre
Larena, Julien
Cosmology and Nongalactic Astrophysics
The analysis of strong lensing images usually involves an external convergence and shear, which are meant to model the effect of perturbations along the line of sight, on top of the main lens. Such a description of line-of-sight perturbations supposes that the corresponding gravitational fields can be treated in the tidal regime. Going one step further introduces additional effects, known as flexion, which have been hitherto neglected in strong lensing. In this work, we build a minimal model for the line-of-sight flexion, which adds four new complex parameters to the lens model. Contrary to convergence and shear, the line-of-sight flexion cannot be projected onto the main lens plane. For a $Λ$CDM cosmology, we predict the typical line-of-sight flexion to be on the order of $10^{-3} \mathrm{arcsec}^{-1}$ on galactic scales. Neglecting its effect in lens modelling is found to bias the recovery of other parameters; in particular, the line-of-sight shear can be biased up to $2σ$. Accounting for the line-of-sight flexion in our minimal framework restores accuracy, at the the cost of degrading precision. With current imaging capabilities, the line-of-sight flexion is unlikely to be measurable on individual strong lensing images; it must therefore be considered a nuisance parameter rather than an observable in its own right.
title Weak lensing of strong lensing: beyond the tidal regime
topic Cosmology and Nongalactic Astrophysics
url https://arxiv.org/abs/2405.12091