English

Weak Lensing Study in VOICE Survey I: Shear Measurement

Cosmology and Nongalactic Astrophysics 2018-06-15 v2

Abstract

The VST Optical Imaging of the CDFS and ES1 Fields (VOICE) Survey is a Guaranteed Time program carried out with the ESO/VST telescope to provide deep optical imaging over two 4 deg2^2 patches of the sky centred on the CDFS and ES1 pointings. We present the cosmic shear measurement over the 4 deg2^2 covering the CDFS region in the rr-band using LensFit. Each of the four tiles of 1 deg2^2 has more than one hundred exposures, of which more than 50 exposures passed a series of image quality selection criteria for weak lensing study. The 5σ5\sigma limiting magnitude in rr- band is 26.1 for point sources, which is \sim1 mag deeper than other weak lensing survey in the literature (e.g. the Kilo Degree Survey, KiDS, at VST). The photometric redshifts are estimated using the VOICE u,g,r,iu,g,r,i together with near-infrared VIDEO data Y,J,H,KsY,J,H,K_s. The mean redshift of the shear catalogue is 0.87, considering the shear weight. The effective galaxy number density is 16.35 gal/arcmin2^2, which is nearly twice the one of KiDS. The performance of LensFit on such a deep dataset was calibrated using VOICE-like mock image simulations. Furthermore, we have analyzed the reliability of the shear catalogue by calculating the star-galaxy cross-correlations, the tomographic shear correlations of two redshift bins and the contaminations of the blended galaxies. As a further sanity check, we have constrained cosmological parameters by exploring the parameter space with Population Monte Carlo sampling. For a flat Λ\LambdaCDM model we have obtained Σ8\Sigma_8 = σ8(Ωm/0.3)0.5\sigma_8(\Omega_m/0.3)^{0.5} = 0.680.15+0.110.68^{+0.11}_{-0.15}.

Keywords

Cite

@article{arxiv.1802.10282,
  title  = {Weak Lensing Study in VOICE Survey I: Shear Measurement},
  author = {Liping Fu and Dezi Liu and Mario Radovich and Xiangkun Liu and Chuzhong Pan and Zuhui Fan and Giovanni Covone and Mattia Vaccari and Valeria Amaro and Massimo Brescia and Massimo Capaccioli and Demetra De Cicco and Aniello Grado and Luca Limatola and Lance Miller and Nicola R. Napolitano and Maurizio Paolillo and Giuliano Pignata},
  journal= {arXiv preprint arXiv:1802.10282},
  year   = {2018}
}

Comments

15 pages, 16 figures, 4 tables. MNRAS Accepted

R2 v1 2026-06-23T00:36:16.747Z