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Review

Euclid. A two-point correlation approach to diagnosing star-related systematics in the Euclid spectroscopic survey

Euclid Collaboration I. Risso B. Granett E. Branchini A. Veropalumbo B. Kubik P. Monaco J. Comparat A. Hall N. Aghanim B. Altieri A. Amara S. Andreon N. Auricchio C. Baccigalupi M. Baldi A. Balestra S. Bardelli P. Battaglia A. Biviano M. Bolzonella M. Brescia S. Camera G. Cañas-Herrera V. Capobianco C. Carbone J. Carretero F. Castander M. Castellano G. Castignani S. Cavuoti A. Cimatti C. Colodro-Conde G. Congedo L. Conversi Y. Copin F. Courbin H. Courtois H. Degaudenzi S. de la Torre G. de Lucia H. Dole F. Dubath X. Dupac S. Dusini S. Escoffier M. Farina R. Farinelli S. Ferriol F. Finelli N. Fourmanoit M. Frailis E. Franceschi M. Fumana L. Gabarra S. Galeotta K. George W. Gillard B. Gillis C. Giocoli J. Graci'a-Carpio A. Grazian F. Grupp L. Guzzo S. Haugan S. Hemmati W. Holmes F. Hormuth A. Hornstrup K. Jahnke M. Jhabvala B. Joachimi S. Kermiche A. Kiessling M. Kümmel M. Kunz H. Kurki-Suonio A. L. Le Brun S. Ligori P. Lilje V. Lindholm I. Lloro M. Magliocchetti G. Mainetti O. Mansutti O. Marggraf M. Martinelli N. Martinet F. Marulli R. Massey N. Mauri E. Medinaceli M. Melchior M. Meneghetti E. Merlin G. Meylan A. Mora Michele Moresco C. Moretti L. Moscardini R. Nakajima C. Neißner S. Niemi J. Nightingale C. Padilla S. Paltani F. Pasian W. Percival V. Pettorino A. Pezzotta S. Pires G. Polenta M. Poncet L. Popa F. Raison A. Renzi J. Rhodes G. Riccio F. Rizzo E. Romelli M. Roncarelli B. Rusholme R. Saglia Z. Sakr A. G. Sánchez D. Sapone B. Sartoris P. Schneider T. Schrabback M. Scodeggio A. Secroun E. Sihvola C. Sirignano G. Sirri L. Stanco P. Tallada-Cresp'i A. N. Taylor I. Tereno N. Tessore S. Toft R. Toledo-Moreo F. Torradeflot I. Tutusaus J. Valiviita T. Vassallo Y. Wang J. Weller G. Zamorani F. Zerbi E. Zucca M. Ballardini E. Bozzo C. Burigana R. Cabanac M. Calabrese A. Cappi F. Caro T. Castro J. A. Escartin Vigo J. Garcia-Bellido T. Gasparetto J. Macias-Perez R. Maoli R. B. Metcalf A. Nucita M. Pöntinen E. Sarpa V. Scottez M. Sereno M. Tenti M. Tucci M. Viel M. Wiesmann J. A. Acevedo Barroso Y. Akrami I. Andika S. Anselmi M. Archidiacono G. Aricò F. Atrio-Barandela M. Baes L. Bazzanini J. Bel D. Bertacca M. Béthermin F. Beutler L. Blot M. Bonici M. L. Brown S. Bruton B. Quevedo P. Carrilho C. S. Carvalho F. Cogato T. Collett S. Conseil S. Contarini A. Cooray P. Corcho-Caballero B. Csizi O. Cucciati S. Davini T. D. de Boer F. De Paolis G. Desprez A. Díaz-Sánchez S. Di Domizio J. M. Diego V. Duret A. Enia Y. Fang A. Farina A. Finoguenov A. Franco Y. Fu K. Ganga E. Gaztañaga Z. Ghaffari F. Giacomini F. Gianotti G. Gozaliasl A. Gruppuso M. Guidi C. M. Gutiérrez H. Hildebrandt J. Hjorth M. Jauzac J. Kajava Y. Kang Vanshika Kansal D. Karagiannis J. Kim C. Kirkpatrick A. Kov'acs I. Kovačić K. Koyama S. Kruk M. Lam F. Leclercq L. Legrand M. Lembo G. Leroy G. Lesci J. Lesgourgues T. Liaudat L. Linke S.-J. Liu F. Mannucci F. Marleau C. J. A. P. Martins M. Miluzio G. Morgante S. Nadathur K. Naidoo A. Navarro-Alsina S. Nesseris L. Nicastro F. Oppizzi F. Pace D. Paoletti G. Parimbelli F. Passalacqua K. Paterson L. Patrizii C. Pattison R. Paviot A. Pisani D. Potter G. W. Pratt S. Quai M. Radovich G. Rodighiero W. Roster S. Sacquegna M. Sahl'en D. Sanders A. Schneider D. Sciotti E. Sellentin S. Serjeant L. C. Smith J. Sorce I. Szapudi M. Talia K. Tanidis C. Tao F. Tarsitano G. Testera R. Teyssier S. Tosi A. Troja C. Uhlemann C. Valieri A. Venhola D. Vergani G. Verza S. Vinciguerra M. von Wietersheim-Kramsta N. A. Walton L. Wang A. B. D. D. Fisica U. Genova 33 viaDodecaneso 16146 Genova Italy INFN-Sezione di Genova INAF-Osservatorio Astronomico di Brera 28 ViaBrera 20133 Milano 1. Universit'eClaudeBernardLyon CNRSIN2p3 Ipn Lyon Umr Villeurbanne F-69100 France D. Astronomia U. Trieste 11 ViaTiepolo 34127 Trieste INAF-Osservatorio Astronomico di Trieste 11 ViaG.B.Tiepolo 34127 Trieste Infn Sezione di Trieste 2. ViaValerio TS 34127Trieste Ifpu Institute for Fundamental Physics of the Universe 2. viaBeirut 34127 Trieste Univ. Grenoble Alpes Cnrs Grenoble Inp LPSC-IN2P3 53 Avenue des Martyrs 38000 Grenoble Institute for Astronomy University of Edinburgh R. Observatory B. Hill Edinburgh EH9 3HJ Uk Universit'e Paris-Saclay Institut d'Astrophysique Spatiale 91405 Orsay Esacesa C. D. del Castillo Sn. Urb. Villafranca del Castillo 28692 Villanueva de la Cañada Madrid Spain S. O. Mathematics Physics U. Surrey Guildford Surrey GU2 7XH INAF-Osservatorio di Astrofisica e Scienza Dello Spazio di Bologna V. Gobetti 40129 Bologna Sissa International School for Advanced Studies Via Bonomea TS 34136Trieste D. Astronomia U. Bologna V. Gobetti I. di Bologna 62 vialeBertiPichat 40129 Bologna INAF-Osservatorio Astronomico di Padova 5. Viadell'Osservatorio 35131 Padova Department of PhysicsE. Pancini University Federico 6. ViaCinthia 80126 Napoli INAF-Osservatorio Astronomico di Capodimonte 16 ViaMoiariello 80131 Napoli Dipartimento di Fisica U. Torino 1. viaP.Giuria 10125 Torino INFN-Sezione di Torino INAF-Osservatorio Astrofisico di Torino 20 viaOsservatorio 1. P. Torinese L. Observatory Leiden University 55 Einsteinweg 2333 CC Leiden The Netherlands Inafiasf Milano 12 ViaAlfonsoCorti 20133 Milano Centro de Investigaciones Energ'eticas Medioambientales Y. Tecnol'ogicas 40 AvenidaComplutense 28014 Madrid Port d'Informaci'o Cient'ifica Campus Uab C. Sn 08193 Bellaterra Institute of Space Sciences Carrer de Can Magrans Sn. 08193 Barcelona I. D. E. D. Catalunya Edifici Rdit C. Upc 08860 Castelldefels Barcelona INAF-Osservatorio Astronomico di Roma 33 viaFrascati 00078 Monteporzio Catone Infn Sezione di Napoli D. Bologna Instituto de Astrofı́sica de Canarias E. Laguna Tenerife European Space AgencyESRIN 1. LargoGalileoGalilei 00044 Frascati Roma Institut de Ciències del Cosmos U. Barcelona 1. Mart'iiFranques 08193 Barcelona I. C. de Recerca I Estudis Avançats 23 PasseigdeLluı́sCompanys 08193 Barcelona Institut de Ciències de l'Espai Sn Cerdanyola del Vall'es 1. UCBLyon Iuf 4. R. E. Fermi 69622 Villeurbanne D. O. Astronomy U. Geneva 16 ch.d'Ecogia 1290 Versoix Switzerland A. Universit'e Cnes Lam Marseille INFN-Padova 8. ViaMarzolo 35131 Padova Cppm I. D. A. E. P. Spaziali Via del Fosso del Cavaliere 100 00133 Roma INFN-Bologna 46 ViaIrnerio 40129 Bologna D. Physics U. Oxford Keble Road O. 3RH University Observatory Lmu Faculty of Physics 1. Scheinerstr. 81679 Munich Germany. M. V. I. O. Physics 1. Giessenbachstr. 85748 Garching U. München F. Physik Ludwig-Maximilians-Universität München 81679 München Dipartimento di FisicaAldo Pontremoli Universita di Milano 16 viaCeloria I. di Milano I. Astrophysics U. Oslo P. O. B. 1. Blindern 0315 Oslo Norway CaltechIPAC 1. E. C. Blvd. Pasadena Ca Usa Jet Propulsion Laboratory California institute of Technology 4800 Oak Grove Drive Ca 91109 Felix Hormuth Engineering
Sep 2026 · 0 citations · 12 references
Physics

Abstract

The Euclid spectroscopic survey will measure galaxy clustering with unprecedented precision, requiring stringent control of observational and instrumental systematics. Star-related effects may contaminate spectroscopic images through photometric persistence and imperfect masking of stars. We characterized their impact on galaxy clustering analyses, focusing on angular features identifiable in the data. We used angular and spatial auto- and cross-correlation statistics. For galaxies, we used mock spectroscopic catalogues from the EuclidLargeMocks in a 330 deg2 region of the Euclid Wide Survey (EWS). For stars, we used Gaia and 2MASS catalogues in the same area. To simulate photometric persistence, we implemented a simplified detector-level model calibrated on spectroscopic measurements and varied its strength to introduce different interloper fractions. For stellar masking, we modelled inconsistencies between the mask applied to the data and to the random catalogue. We measured star-star, galaxy-galaxy, and star-galaxy angular correlation functions using the Landy--Szalay estimator, and quantified deviations from the expected null star-galaxy correlation. We also evaluated the large-scale impact of such systematics through the three-dimensional two-point correlation function (2PCF). Photometric persistence produces a characteristic feature in the star-galaxy angular cross-correlation at scales of order 100", corresponding to the Euclid dithering pattern and grism dispersion geometry, and a spurious positive signal approximately constant up to 1{\deg}. Star-galaxy cross-correlation can detect residual persistence at contamination levels as low as 10% in a Data Release 1 spectroscopic catalogue. In contrast, stellar-mask mismatches produce strong small-scale angular signatures but have negligible impact on the large-scale 2PCF under realistic EWS conditions.

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