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Weak gravitational lensing of finite beams

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abstract

The standard theory of weak gravitational lensing relies on the infinitesimal light beam approximation. In this context, images are distorted by convergence and shear, the respective sources of which unphysically depend on the resolution of the distribution of matter---the so-called Ricci-Weyl problem. In this letter, we propose a strong-lensing-inspired formalism to describe the lensing of finite beams. We address the Ricci-Weyl problem by showing explicitly that convergence is caused by the matter enclosed by the beam, regardless of its distribution. Furthermore, shear turns out to be systematically enhanced by the finiteness of the beam. This implies, in particular, that the Kaiser-Squires relation between shear and convergence is violated, which could have profound consequences on the interpretation of weak lensing surveys.

fields

astro-ph.CO 1

years

2019 1

verdicts

ACCEPT 1

representative citing papers

Tetrad formalism for exact cosmological observables

astro-ph.CO · 2019-08-28 · accept · novelty 7.0

The paper derives exact, coordinate-independent equations for cosmological observables on a new 'observer space-time' manifold, using tetrads to track the observer frame.

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  • Tetrad formalism for exact cosmological observables astro-ph.CO · 2019-08-28 · accept · none · ref 84 · internal anchor

    The paper derives exact, coordinate-independent equations for cosmological observables on a new 'observer space-time' manifold, using tetrads to track the observer frame.