The consequences of parity symmetry for higher-order statistics of cosmic shear and other polar fields
arXiv:astro-ph/0305240 · doi:10.1051/0004-6361:20031035
Abstract
We consider the parity transformation and the consequences of parity invariance on the -point correlation function of the cosmic shear, or any other polar (or `spin-2') field. The decomposition of the shear field into E- and B-modes then yields the result that any correlation function which contains an odd number of B-mode shear components vanishes for parity-invariant random shear fields. This result is at variance with some statements in the literature, and the reasons for this is explained. We argue that the parity invariance provides a very specific diagnostic of systematic effects in shear data.
6 pages, no figures, minor changes to match the paper published in Astronomy & Astrophysics 408, 829--834
References in corpus (11)
- B-modes in cosmic shear from source redshift clustering
- Weak Lensing Results from the 75 Square Degree CTIO Survey
- Constraints on Omega_m and sigma_8 from weak lensing in RCS fields
- E/B decomposition of finite pixelized CMB maps
- Likelihood Analysis of Cosmic Shear on Simulated and VIRMOS-DESCART Data
- Detection of non-Gaussian Signatures in the VIRMOS-DESCART Lensing Survey
- Detection of dark matter Skewness in the VIRMOS-DESCART survey: Implications for Ω_0
- The three-point correlation function of cosmic shear: I. The natural components
- Patterns in the weak shear 3-point correlation function
- Higher-order moments of the lensing shear and other spin two fields
- The Three-Point Correlation Function for Spin-2 Fields
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