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Weak-lensing observables in relativistic N-body simulations

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arxiv 2002.04024 v2 pith:MQ7ARJ2N submitted 2020-02-10 astro-ph.CO gr-qc

Weak-lensing observables in relativistic N-body simulations

classification astro-ph.CO gr-qc
keywords weak-lensingrelativisticanalysisconsistentlycorrectionsn-bodypartsimulations
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We present a numerical weak-lensing analysis that is fully relativistic and non-perturbative for the scalar part of the gravitational potential and first-order in the vector part, frame dragging. Integrating the photon geodesics backwards from the observer to the emitters, we solve the Sachs optical equations and study in detail the weak-lensing convergence, ellipticity and rotation. For the first time, we apply such an analysis to a high-resolution relativistic N-body simulation, which consistently includes the leading-order corrections due to general relativity on both large and small scales. These are related to the question of gauge choice and to post-Newtonian corrections, respectively. We present the angular power spectra and one-point probability distribution functions for the weak-lensing variables, which we find are broadly in agreement with comparable Newtonian simulations. Our geometric approach, however, is more robust and flexible, and can therefore be applied consistently to non-standard cosmologies and modified theories of gravity.

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Cited by 2 Pith papers

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  1. gevolution 2.0: GPU-accelerated relativistic N-body simulations for cosmology

    astro-ph.IM 2026-07 conditional novelty 6.0

    gevolution 2.0 accelerates relativistic N-body cosmological simulations on Nvidia GPUs, achieving a ~4.5x node-hour speed-up over its CPU-only predecessor.

  2. Signatures of kinetic gravity braiding in cosmological probes of the gravitational field

    gr-qc 2026-07 accept novelty 5.0

    KGB braiding boosts weak-lensing power by ~10–12% at ℓ~10²–10³ and flips the ISW–RS difference from suppression to excess once nonlinear Rees–Sciama physics dominates.