English

UNIONS: The impact of systematic errors on weak-lensing peak counts

Cosmology and Nongalactic Astrophysics 2023-03-23 v3

Abstract

UNIONS is an ongoing deep photometric multi-band survey of the Northern sky. As part of UNIONS, CFIS provides r-band data which we use to study weak-lensing peak counts for cosmological inference. We assess systematic effects for weak-lensing peak counts and their impact on cosmological parameters for the UNIONS survey. In particular, we present results on local calibration, metacalibration shear bias, baryonic feedback, the source galaxy redshift estimate, intrinsic alignment, and the cluster member dilution. For each uncertainty and systematic effect, we describe our mitigation scheme and the impact on cosmological parameter constraints. We obtain constraints on cosmological parameters from MCMC using CFIS data and MassiveNuS N-body simulations as a model for peak counts statistics. Depending on the calibration (local versus global, and the inclusion of the residual multiplicative shear bias), the mean matter density parameter Ωm\Omega_m can shift up to 0.024-0.024 (0.5σ-0.5\sigma). We also see that including baryonic corrections can shift Ωm\Omega_m by +0.027+0.027 (+0.5σ+0.5 \sigma) with respect to the DM-only simulations. Reducing the impact of the intrinsic alignment and cluster member dilution through signal-to-noise cuts can lead to a shift in Ωm\Omega_m of +0.027+0.027 (+0.5σ+0.5 \sigma). Finally, with a mean redshift uncertainty of Δzˉ=0.03\Delta \bar{z} = 0.03, we see that the shift of Ωm\Omega_m (+0.001+0.001 which corresponds to +0.02σ+0.02 \sigma) is not significant. This paper investigates for the first time with UNIONS weak-lensing data and peak counts the impact of systematic effects. The value of Ωm\Omega_m is the most impacted and can shift up to 0.03\sim 0.03 which corresponds to 0.5σ0.5\sigma depending on the choices for each systematics. We expect constraints to become more reliable with future (larger) data catalogues, for which the current pipeline will provide a starting point.

Keywords

Cite

@article{arxiv.2204.06280,
  title  = {UNIONS: The impact of systematic errors on weak-lensing peak counts},
  author = {Emma Ayçoberry and Virginia Ajani and Axel Guinot and Martin Kilbinger and Valeria Pettorino and Samuel Farrens and Jean-Luc Starck and Raphaël Gavazzi and Michael J. Hudson},
  journal= {arXiv preprint arXiv:2204.06280},
  year   = {2023}
}

Comments

19 pages, 19 figures

R2 v1 2026-06-24T10:46:46.691Z