2019A&A...624A..92K


Query : 2019A&A...624A..92K

2019A&A...624A..92K - Astronomy and Astrophysics, volume 624A, 92-92 (2019/4-1)

Towards emulating cosmic shear data: revisiting the calibration of the shear measurements for the Kilo-Degree Survey.

KANNAWADI A., HOEKSTRA H., MILLER L., VIOLA M., FENECH CONTI I., HERBONNET R., ERBEN T., HEYMANS C., HILDEBRANDT H., KUIJKEN K., VAKILI M. and WRIGHT A.H.

Abstract (from CDS):

Exploiting the full statistical power of future cosmic shear surveys will necessitate improvements to the accuracy with which the gravitational lensing signal is measured. We present a framework for calibrating shear with image simulations that demonstrates the importance of including realistic correlations between galaxy morphology, size, and more importantly, photometric redshifts. This realism is essential to ensure that selection and shape measurement biases can be calibrated accurately for a tomographic cosmic shear analysis. We emulate Kilo-Degree Survey (KiDS) observations of the COSMOS field using morphological information from Hubble Space Telescope imaging, faithfully reproducing the measured galaxy properties from KiDS observations of the same field. We calibrate our shear measurements from lensfit, and find through a range of sensitivity tests that lensfit is robust and unbiased within the allowed two per cent tolerance of our study. Our results show that the calibration has to be performed by selecting the tomographic samples in the simulations, consistent with the actual cosmic shear analysis, because the joint distributions of galaxy properties are found to vary with redshift. Ignoring this redshift variation could result in misestimating the shear bias by an amount that exceeds the allowed tolerance. To improve the calibration for future cosmic shear analyses, it will also be essential to correctly account for the measurement of photometric redshifts, which requires simulating multi-band observations.

Abstract Copyright: © ESO 2019

Journal keyword(s): gravitational lensing: weak - cosmology: observations - large-scale structure of Universe - cosmological parameters

Simbad objects: 2

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Number of rows : 2
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2023
#notes
1 NAME Hubble Ultra Deep Field reg 03 32 39.0 -27 47 29           ~ 1571 0
2 NAME COSMOS Field reg 10 00 28.60 +02 12 21.0           ~ 2756 0

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2023.06.08-04:38:59

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