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The three-point correlation function of cosmic shear: I. The natural components

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arxiv astro-ph/0207454 v2 pith:7YLNTELU submitted 2002-07-22 astro-ph

classification astro-ph
keywords correlationfunctionshearcosmiccomponentsstatisticsnaturalproperties
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Previous work on three-point statistics of cosmic shear has mainly concentrated on the convergence, or on aperture measures of the shear. However, as has become clear recently for the two-point statistics of cosmic shear, the basic quantity that should be used is the correlation function: first, it is much easier to measure from observational data, since it is immune against complicated geometries of data fields; second, all other (linear) 2-pt statistics can be expressed as integrals over the correlation function. The situation is the same for the 3-pt statistics. However, in contrast to the 2-pt correlation function, the invariants of the shear 3-pt correlation function have not been employed yet. Here we consider the transformation properties of the shear 3-pt correlation function under rotations. We show that there are four complex linear combinations of components of the 3-pt correlation function, which we shall call `natural components', since they are multiplied just by a phase factor for arbitrary rotations, but do not mix. In particular, their moduli are invariant under rotations and thus (non-linear) invariants of the 3-pt correlation function. In terms of these natural components, the invariance of the statistical properties of the shear field under parity transformations are easily obtained. Our results do not apply only to cosmic shear, but also to other quantities with the same mathematical properties -- that of a polar. For example, practically every relation derived here applies also to the polarization of the cosmic microwave background radiation.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Cosmology from a joint analysis of second and third order shear statistics with Subaru Hyper Suprime-Cam Year 3 data

    astro-ph.CO 2025-08 reject novelty 6.0 of 10

    The body is a DES-Y3 analysis showing a 111% figure-of-merit gain from adding aperture-mass skewness to two-point shear, but the abstract's HSC-Y3 headline numbers do not appear anywhere in the text.

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