A new cosmic shear function: Optimised E-/B-mode decomposition on a finite interval
نویسنده
چکیده
The decomposition of the cosmic shear field into Eand B-mode is an important diagnostic in weak gravitational lensing. However, commonly used techniques to perform this separation suffer from mode-mixing on very small or very large scales. We introduce a new E-/B-mode decomposition of the cosmic shear two-point correlation on a finite interval. This new statistic is optimised for cosmological applications, by maximising the signal-to-noise ratio (S/N) and a figure of merit (FoM) based on the Fisher matrix of the cosmological parameters Ωm and σ8. We improve both S/N and FoM results substantially with respect to the recently introduced ring statistic, which also provides E-/B-mode separation on a finite angular range. The S/N (FoM) is larger by a factor of three (two) on angular scales between 1 and 220 arc minutes. In addition, it yields better results than for the aperture-mass dispersion 〈M2 ap〉, with improvements of 20% (10%) for S/N (FoM). Our results depend on the survey parameters, most importantly on the covariance of the two-point shear correlation function. Although we assume parameters according to the CFHTLS-Wide survey, our method and optimisation scheme can be applied easily to any given survey settings and observing parameters. Arbitrary quantities, with respect to which the E-/B-mode filter is optimised, can be defined, therefore generalising the aim and context of the new shear statistic.
منابع مشابه
The ring statistics – how to separate E- and B-modes of cosmic shear correlation functions on a finite interval
Aims. Cosmic shear, the distortion of images of distant sources by the tidal gravitational field of the large-scale matter distribution in the Universe, is one of the most powerful cosmological probes. The measured shear field may be due not only to the gravitational lensing effect, but may contain systematic effects from the measurement process or intrinsic alignment of galaxy shapes. One of t...
متن کاملMeasuring cosmic shear with the ring statistics
Context. Commonly used methods to decompose Eand B-modes in cosmic shear, namely the aperture mass dispersion and the E/B-mode shear correlation function, suffer from incomplete knowledge of the two-point correlation function (2PCF) on very small and/or very large scales. The ring statistics, the most recently developed cosmic shear measure, improves on this issue and is able to decompose Eand ...
متن کاملThe consequences of parity symmetry for higher-order statistics of cosmic shear and other polar fields
We consider the parity transformation and the consequences of parity invariance on the n-point correlation function of the cosmic shear, or any other polar (or ‘spin-2’) field. The decomposition of the shear field into Eand 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 ...
متن کاملE - and B - mode mixing from incomplete knowledge of the shear correlation ( Research Note )
Aims. We quantify the mixing of the measured cosmic shear Eand B-mode due to the lack of shear correlation measurements on small and large scales, which arises due to the lack of close projected galaxy pairs and the finite field size, respectively. Methods. We calculate the aperture mass statistics 〈M2 ap,⊥〉 and the E-/B-mode shear correlation functions ξE,B± with smalland large-scale cut-offs ...
متن کاملBlind Voice Separation Based on Empirical Mode Decomposition and Grey Wolf Optimizer Algorithm
Blind voice separation refers to retrieve a set of independent sources combined by an unknown destructive system. The proposed separation procedure is based on processing of the observed sources without having any information about the combinational model or statistics of the source signals. Also, the number of combined sources is usually predefined and it is difficult to estimate based on the ...
متن کامل