Euclid: V. The Flagship galaxy mock catalogue: a comprehensive simulation for the Euclid mission

We present the Flagship galaxy mock, a simulated catalogue of billions of galaxies designed to support the scientific exploitation of the Euclid mission. Euclid is a medium-class mission of the European Space Agency optimised to determine the properties of dark matter and dark energy on the largest...

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Main Authors: Castander, Francisco J. (Author) , Amendola, Luca (Author) , Jahnke, Knud (Author) , Sakr, Ziad (Author) , Schirmer, Mischa (Author) , Seidel, Gregor (Author)
Format: Article (Journal)
Language:English
Published: May 2025
In: Astronomy and astrophysics
Year: 2025, Volume: 697, Pages: 1-47
ISSN:1432-0746
DOI:10.1051/0004-6361/202450853
Online Access:Verlag, kostenfrei, Volltext: https://doi.org/10.1051/0004-6361/202450853
Verlag, kostenfrei, Volltext: https://www.aanda.org/articles/aa/abs/2025/05/aa50853-24/aa50853-24.html
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Author Notes:Euclid Collaboration
Description
Summary:We present the Flagship galaxy mock, a simulated catalogue of billions of galaxies designed to support the scientific exploitation of the Euclid mission. Euclid is a medium-class mission of the European Space Agency optimised to determine the properties of dark matter and dark energy on the largest scales of the Universe. It probes structure formation over more than 10 billion years primarily from the combination of weak gravitational lensing and galaxy clustering data. The breadth of Euclid’s data will also foster a wide variety of scientific analyses. The Flagship simulation was developed to provide a realistic approximation to the galaxies that will be observed by Euclid and used in its scientific exploitation. We ran a state-of-the-art N-body simulation with four trillion particles, producing a lightcone on the fly. From the dark matter particles, we produced a catalogue of 16 billion haloes in one octant of the sky in the lightcone up to redshift z = 3. We then populated these haloes with mock galaxies using a halo occupation distribution and abundance-matching approach, calibrating the free parameters of the galaxy mock against observed correlations and other basic galaxy properties. Modelled galaxy properties include luminosity and flux in several bands, redshifts, positions and velocities, spectral energy distributions, shapes and sizes, stellar masses, star formation rates, metallicities, emission line fluxes, and lensing properties. We selected a final sample of 3.4 billion galaxies with a magnitude cut of HE < 26, where we are complete. We have performed a comprehensive set of validation tests to check the similarity to observational data and theoretical models. In particular, our catalogue is able to closely reproduce the main characteristics of the weak lensing and galaxy clustering samples to be used in the mission main cosmological analysis. Moreover, given its depth and completeness, this new galaxy mock also provides the community with a powerful tool for developing a wide range of scientific analyses beyond the Euclid mission.
Item Description:Euclid Collaboration: F.J. Castander, L. Amendola, K. Jahnke, Z. Sakr, M. Schirmer, G. Seidel und 363 weitere
Online veröffentlicht: 30. April 2025
Gesehen am 02.02.2026
Physical Description:Online Resource
ISSN:1432-0746
DOI:10.1051/0004-6361/202450853