Euclid: Galaxy morphology and photometry from bulge-disc decomposition of Early Release Observations
L. Quilley (1), V. de Lapparent (2), M. Bolzonella (3), M. Baes (4), I. Damjanov (5), B. H\"au{\ss}ler (6), F. R. Marleau (7), A. Nersesian (8, 4), T. Saifollahi (9), D. Scott (10), J. G. Sorce (11, 12, 13), C. Tortora (14), M. Urbano (9), N. Aghanim (12), B. Altieri (15)

TL;DR
This paper analyzes galaxy morphology in Euclid images using bulge-disc decomposition, assessing model accuracy and galaxy properties, and provides a catalog of fitted parameters.
Contribution
It introduces a detailed bulge-disc decomposition method for Euclid galaxy images and evaluates its effectiveness and limitations.
Findings
Galaxies show a wide range of bulge-to-total ratios from 0 to 1.
Photometric offsets between models are within 0.01-0.08 mag.
Disc colour gradients indicate redder insides in galaxies.
Abstract
The background galaxies in Euclid ERO images of the Perseus cluster make up a remarkable sample in its combination of 0.57 deg area, 25.3 and 23.2 AB mag depth, as well as 0.1" and 0.3" angular resolutions, in optical and near-IR bands, respectively. We perform a morphological analysis of 2445 and 12,786 galaxies with and , respectively. We use single-S\'ersic profiles and the sums of a S\'ersic bulge and an exponential disc to model these galaxies with SourceXtractor++ and analyse their parameters in order to assess their consistencies and discrepancies. The fitted galaxies to span the various Hubble types with ubiquitous bulge and disc components, and a bulge-to-total light ratio B/T taking all values from 0 to 1. The effective radius of the single-S\'ersic profile is an intermediate estimate of galaxy size, between the bulge and disc effective…
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