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SUNBIRD : a simulation-based model for full-shape density-split clustering

delete2024-06-06
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OA
AI
C
Carolina Cuesta-Lazaro *
E
E. Paillas
S
Sihan Yuan
Y
Yan-Chuan Cai
S
S. Nadathur
W
Will J. Percival
F
Florian Beutler
A
Arnaud de Mattia
D
Daniel J. Eisenstein
D
D. Forero-Sánchez
N
Nelson Padilla
M
Mathilde Pinon
V
V. Ruhlmann-Kleider
A
Ariel G. Sánchez
G
Georgios Valogiannis
P
Pauline Zarrouk
DOI:10.1093/mnras/stae1234delete
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Abstract

Abstract

En 中文
Combining galaxy clustering information from regions of different environmental densities can help break cosmological parameter degeneracies and access non-Gaussian information from the density field that is not readily captured by the standard two-point correlation function (2PCF) analyses. However, modelling these density-dependent statistics down to the non-linear regime has so far remained challenging. We present a simulation-based model that is able to capture the cosmological dependence of the full shape of the density-split clustering (DSC) statistics down to intra-halo scales. Our models are based on neural-network emulators that are trained on high-fidelity mock galaxy catalogues within an extended-Lambda CDM framework, incorporating the effects of redshift-space, Alcock-Paczynski distortions, and models of the halo-galaxy connection. Our models reach sub-per cent level accuracy down to 1 h(-1 )Mpc and are robust against different choices of galaxy-halo connection modelling. When combined with the galaxy 2PCF, DSC can tighten the constraints on omega(cdm), sigma(8), and n(s) by factors of 2.9, 1.9, and 2.1, respectively, compared to a 2PCF-only analysis. DSC additionally puts strong constraints on environment-based assembly bias parameters.
Keywords:
cosmological parameters
large-scale structure of Universe

Journal

Monthly Notices of the Royal Astronomical Society cover
Monthly Notices of the Royal Astronomical Society
IF:
4.8
Papers:
7.0W
Citations:
25.0W

Organization

S
Stanford University
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U
University of Portsmouth
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C
CEA
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E
Ecole Polytechnique Federale de Lausanne
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S
swiss federal institutes of technology domain
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9.0W
Papers: 8.0W
Citations: 163
M
Max Planck Society
Scholars:
8.2W
Papers: 7.7W
Citations: 3.3W
U
Universite Paris Saclay
Scholars:
7.3W
Papers: 5.3W
Citations: 540
U
University of Edinburgh
Scholars:
5.2W
Papers: 4.6W
Citations: 71
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