Euclid: Early Release Observations -- Overview of the Perseus cluster and analysis of its luminosity and stellar mass functions
J.-C. Cuillandre (1), M. Bolzonella (2), A. Boselli (3, 4), F. R., Marleau (5), M. Mondelin (1), J. G. Sorce (6, 7, 8), C. Stone (9), F., Buitrago (10, 11), Michele Cantiello (12), K. George (13), N. A. Hatch, (14), L. Quilley (15), F. Mannucci (16), T. Saifollahi (17, 18), R.

TL;DR
This paper presents the deepest luminosity and stellar mass functions for the Perseus galaxy cluster derived from Euclid's early data, revealing flatter slopes than cosmological models predict, thus informing galaxy formation theories.
Contribution
It provides the first detailed LF and SMF for Perseus using Euclid data, demonstrating the telescope's capabilities and advancing understanding of galaxy populations in clusters.
Findings
Deepest LF and SMF recorded for Perseus
LF features a dip at M(IE)=-19
Flatter slopes than cosmological simulations predict
Abstract
The Euclid ERO programme targeted the Perseus cluster of galaxies, gathering deep data in the central region of the cluster over 0.7 square degree, corresponding to approximately 0.25 r_200. The data set reaches a point-source depth of IE=28.0 (YE, JE, HE = 25.3) AB magnitudes at 5 sigma with a 0.16" and 0.48" FWHM, and a surface brightness limit of 30.1 (29.2) mag per square arcsec. The exceptional depth and spatial resolution of this wide-field multi-band data enable the simultaneous detection and characterisation of both bright and low surface brightness galaxies, along with their globular cluster systems, from the optical to the NIR. This study advances beyond previous analyses of the cluster and enables a range of scientific investigations summarised here. We derive the luminosity and stellar mass functions (LF and SMF) of the Perseus cluster in the Euclid IE band, thanks to…
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