Semantic Scholar Open Access 2025

Euclid: Optimising tomographic redshift binning for 3$\times$2pt power spectrum constraints on dark energy

J. H. Wong M. L. Brown C. Duncan A. Amara S. Andreon +495 lainnya

Abstrak

We present a simulation-based method to explore the optimum tomographic redshift binning strategy for 3x2pt analyses with Euclid, focusing on the expected configuration of its first major data release (DR1). To do this, we 1) simulate a Euclid-like observation and generate mock shear catalogues from multiple realisations of the 3x2pt fields on the sky, and 2) measure the 3x2pt Pseudo-Cl power spectra for a given tomographic configuration and derive the constraints that they place on the standard dark energy equation of state parameters (w0, wa). For a simulation including Gaussian-distributed photometric redshift uncertainty and shape noise under a LambdaCDM cosmology, we find that bins equipopulated with galaxies yield the best constraints on (w0, wa) for an analysis of the full 3x2pt signal, or the angular clustering component only. For the cosmic shear component, the optimum (w0, wa) constraints are achieved by bins equally spaced in fiducial comoving distance. However, the advantage with respect to alternative binning choices is only a few percent in the size of the $1\,\sigma\,$(w0, wa) contour, and we conclude that the cosmic shear is relatively insensitive to the binning methodology. We find that the information gain extracted on (w0, wa) for any 3x2pt component starts to saturate at $\gtrsim$ 7-8 bins. Any marginal gains resulting from a greater number of bins is likely to be limited by additional uncertainties present in a real measurement, and the increasing demand for accuracy of the covariance matrix. Finally, we consider a 5% contamination from catastrophic photometric redshift outliers and find that, if these errors are not mitigated in the analysis, the bias induced in the 3x2pt signal for 10 equipopulated bins results in dark energy constraints that are inconsistent with the fiducial LambdaCDM cosmology at $>5\,\sigma$.

Topik & Kata Kunci

Penulis (500)

J

J. H. Wong

M

M. L. Brown

C

C. Duncan

A

A. Amara

S

S. Andreon

C

C. Baccigalupi

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M. Baldi

S

S. Bardelli

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D. Bonino

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28014 Madrid

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Spain.

P

Port d'Informaci'o Cient'ifica

C

Campus Uab

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08193 Bellaterra

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I. F. Physics

C

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Rwth Aachen University

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52056 Aachen

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Institute of Cosmology

G

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U

U. Portsmouth

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D. Bologna

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Instituto de Astrof'isica de Canarias

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C. V. L. sn

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San Crist'obal de La Laguna

T

Tenerife

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U

U. Edinburgh

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R. Observatory

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B. Hill

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Edinburgh EH9 3HJ

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Departament de F'isica

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P

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I

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via del Politecnico snc

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Ludwig-Maximilians-Universitat Munchen

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1. Scheinerstrasse

8

8. Munchen

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Cppm

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35131 Padova

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2. GustafHallstrominkatu

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0. Helsinki

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Finland.

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U. Geneve

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4. CH-1211Geneve

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Helsinki

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1

1. Keplerlaan

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2. Noordwijk

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U. Heidelberg

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Universit'e St Joseph

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Beirut

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Carrer de Can Magrans

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Tapada da Ajuda

1

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U

Universidad Polit'ecnica de Cartagena

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D. D. E. Y. T. D. Computadoras

1

1. PlazadelHospital

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INFN-Bologna

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K. Institute

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U. Groningen

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PO Box 800

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Istituto di Radioastronomia

V

V. G. 101

A

Astronomical Observatory of the Autonomous Region of the Aosta Valley

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39 Loc.Lignan

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I-11020

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Nus

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J

Junia

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U. Lille

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59000 Lille

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Royal Holloway

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U. O. London

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TW20 0EX

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I. -. C. N. D. R. I. H. P. Computing

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Format Sitasi

Wong, J.H., Brown, M.L., Duncan, C., Amara, A., Andreon, S., Baccigalupi, C. et al. (2025). Euclid: Optimising tomographic redshift binning for 3$\times$2pt power spectrum constraints on dark energy. https://www.semanticscholar.org/paper/b27ebd0430bea6a95c9c229bfff638e2910c1d9f

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