Hide metadata

dc.date.accessioned2024-05-03T15:21:34Z
dc.date.available2024-05-03T15:21:34Z
dc.date.created2024-04-26T12:50:51Z
dc.date.issued2024
dc.identifier.citationJansen, H. Tewes, M. Schrabback, T. Aghanim, N. Amara, A. Andreon, S. Auricchio, N. Baldi, M. Branchini, E. Brescia, Massimo Brinchmann, J. Camera, S. Capobianco, V. Carbone, C. Cardone, V.F. Carretero, J. Casas, S. Castellano, M. Cavuoti, Stefano Cimatti, A. Congedo, G. Conversi, L. Copin, Y. Corcione, L. Courbin, F. Courtois, H.M. Da Silva, A. Degaudenzi, H. Dinis, J. Dubath, F. Dupac, X. Farina, M. Farrens, S. Ferriol, S. Frailis, M. Franceschi, E. Fumana, M. Galeotta, S. Gillis, B. Giocoli, C. Grazian, A. Grupp, F. Haugan, Stein Vidar Hagfors Hoekstra, H. Holmes, W. Hormuth, F. Hornstrup, A. Hudelot, P. Jahnke, K. Joachimi, B. Kermiche, S. Kiessling, A. Kilbinger, M. Kitching, T. Kubik, B. Kurki-Suonio, Hannu Ligori, S. Lilje, Per Barth Lindholm, Valtteri Lloro, I. Maiorano, E. Mansutti, O. Marggraf, O. Markovic, K. Martinet, N. Marulli, F. Massey, Richard Medinaceli, E. Mei, S. Melchior, M. Mellier, Y. Meneghetti, M. Merlin, E. Meylan, G. Miller, L. Moresco, M. Moscardini, L. Munari, E. Nakajima, R. Niemi, S.-M. Padilla, C. Paltani, S. Pasian, F. Pedersen, K. Pettorino, V. Pires, S. Polenta, G. Poncet, M. Raison, F. Renzi, A. Rhodes, J. Riccio, G. Romelli, E. Roncarelli, M. Rossetti, E. Saglia, R. Sapone, D. Sartoris, B. Schneider, P. Secroun, A. Seidel, G. Serrano, S. Sirignano, C. Sirri, G. Skottfelt, J. Stanco, L. Tallada-Crespí, P. Tereno, I. Toledo-Moreo, R. Torradeflot, F. Tutusaus, I. Valentijn, E.A. Valenziano, L. Vassallo, T. Veropalumbo, A. Wang, Y. Weller, J. Zamorani, G. Zoubian, J. Colodro-Conde, C. Scottez, V. . Euclid: Improving the efficiency of weak lensing shear bias calibration: Pixel noise cancellation and the response method on trial. Astronomy and Astrophysics (A & A). 2024, 683
dc.identifier.urihttp://hdl.handle.net/10852/110724
dc.description.abstractTo obtain an accurate cosmological inference from upcoming weak lensing surveys such as the one conducted by Euclid , the shear measurement requires calibration using galaxy image simulations. As it typically requires millions of simulated galaxy images and consequently a substantial computational effort, seeking methods to speed the calibration up is valuable. We study the efficiency of different noise cancellation methods that aim at reducing the simulation volume required to reach a given precision in the shear measurement. The more efficient a method is, the faster we can estimate the relevant biases up to a required precision level. Explicitly, we compared fit methods with different noise cancellations and a method based on responses. We used GalSim to simulate galaxies both on a grid and at random positions in larger scenes. Placing the galaxies at random positions requires their detection, which we performed with SExtractor . On the grid, we neglected the detection step and, therefore, the potential detection bias arising from it. The shear of the simulated images was measured with the fast moment-based method KSB, for which we note deviations from purely linear shear measurement biases. For the estimation of uncertainties, we used bootstrapping as an empirical method. We extended the response-based approach to work on a wider range of shears and provide accurate estimates of selection biases. We find that each method we studied on top of shape noise cancellation can further increase the efficiency of calibration simulations. The improvement depends on the considered shear amplitude range and the type of simulations (grid-based or random positions). The response method on a grid for small shears provides the biggest improvement. Here the runtime for the estimation of multiplicative biases can be lowered by a factor of 145 compared to the benchmark simulations without any cancellation. In the more realistic case of randomly positioned galaxies, we still find an improvement factor of 70 for small shears using the response method. Alternatively, the runtime can be lowered by a factor of 7 already using pixel noise cancellation on top of shape noise cancellation. Furthermore, we demonstrate that the efficiency of shape noise cancellation can be enhanced in the presence of blending if entire scenes are rotated instead of individual galaxies.
dc.languageEN
dc.rightsAttribution 4.0 International
dc.rights.urihttps://creativecommons.org/licenses/by/4.0/
dc.titleEuclid: Improving the efficiency of weak lensing shear bias calibration: Pixel noise cancellation and the response method on trial
dc.title.alternativeENEngelskEnglishEuclid: Improving the efficiency of weak lensing shear bias calibration: Pixel noise cancellation and the response method on trial
dc.typeJournal article
dc.creator.authorJansen, H.
dc.creator.authorTewes, M.
dc.creator.authorSchrabback, T.
dc.creator.authorAghanim, N.
dc.creator.authorAmara, A.
dc.creator.authorAndreon, S.
dc.creator.authorAuricchio, N.
dc.creator.authorBaldi, M.
dc.creator.authorBranchini, E.
dc.creator.authorBrescia, Massimo
dc.creator.authorBrinchmann, J.
dc.creator.authorCamera, S.
dc.creator.authorCapobianco, V.
dc.creator.authorCarbone, C.
dc.creator.authorCardone, V.F.
dc.creator.authorCarretero, J.
dc.creator.authorCasas, S.
dc.creator.authorCastellano, M.
dc.creator.authorCavuoti, Stefano
dc.creator.authorCimatti, A.
dc.creator.authorCongedo, G.
dc.creator.authorConversi, L.
dc.creator.authorCopin, Y.
dc.creator.authorCorcione, L.
dc.creator.authorCourbin, F.
dc.creator.authorCourtois, H.M.
dc.creator.authorDa Silva, A.
dc.creator.authorDegaudenzi, H.
dc.creator.authorDinis, J.
dc.creator.authorDubath, F.
dc.creator.authorDupac, X.
dc.creator.authorFarina, M.
dc.creator.authorFarrens, S.
dc.creator.authorFerriol, S.
dc.creator.authorFrailis, M.
dc.creator.authorFranceschi, E.
dc.creator.authorFumana, M.
dc.creator.authorGaleotta, S.
dc.creator.authorGillis, B.
dc.creator.authorGiocoli, C.
dc.creator.authorGrazian, A.
dc.creator.authorGrupp, F.
dc.creator.authorHaugan, Stein Vidar Hagfors
dc.creator.authorHoekstra, H.
dc.creator.authorHolmes, W.
dc.creator.authorHormuth, F.
dc.creator.authorHornstrup, A.
dc.creator.authorHudelot, P.
dc.creator.authorJahnke, K.
dc.creator.authorJoachimi, B.
dc.creator.authorKermiche, S.
dc.creator.authorKiessling, A.
dc.creator.authorKilbinger, M.
dc.creator.authorKitching, T.
dc.creator.authorKubik, B.
dc.creator.authorKurki-Suonio, Hannu
dc.creator.authorLigori, S.
dc.creator.authorLilje, Per Barth
dc.creator.authorLindholm, Valtteri
dc.creator.authorLloro, I.
dc.creator.authorMaiorano, E.
dc.creator.authorMansutti, O.
dc.creator.authorMarggraf, O.
dc.creator.authorMarkovic, K.
dc.creator.authorMartinet, N.
dc.creator.authorMarulli, F.
dc.creator.authorMassey, Richard
dc.creator.authorMedinaceli, E.
dc.creator.authorMei, S.
dc.creator.authorMelchior, M.
dc.creator.authorMellier, Y.
dc.creator.authorMeneghetti, M.
dc.creator.authorMerlin, E.
dc.creator.authorMeylan, G.
dc.creator.authorMiller, L.
dc.creator.authorMoresco, M.
dc.creator.authorMoscardini, L.
dc.creator.authorMunari, E.
dc.creator.authorNakajima, R.
dc.creator.authorNiemi, S.-M.
dc.creator.authorPadilla, C.
dc.creator.authorPaltani, S.
dc.creator.authorPasian, F.
dc.creator.authorPedersen, K.
dc.creator.authorPettorino, V.
dc.creator.authorPires, S.
dc.creator.authorPolenta, G.
dc.creator.authorPoncet, M.
dc.creator.authorRaison, F.
dc.creator.authorRenzi, A.
dc.creator.authorRhodes, J.
dc.creator.authorRiccio, G.
dc.creator.authorRomelli, E.
dc.creator.authorRoncarelli, M.
dc.creator.authorRossetti, E.
dc.creator.authorSaglia, R.
dc.creator.authorSapone, D.
dc.creator.authorSartoris, B.
dc.creator.authorSchneider, P.
dc.creator.authorSecroun, A.
dc.creator.authorSeidel, G.
dc.creator.authorSerrano, S.
dc.creator.authorSirignano, C.
dc.creator.authorSirri, G.
dc.creator.authorSkottfelt, J.
dc.creator.authorStanco, L.
dc.creator.authorTallada-Crespí, P.
dc.creator.authorTereno, I.
dc.creator.authorToledo-Moreo, R.
dc.creator.authorTorradeflot, F.
dc.creator.authorTutusaus, I.
dc.creator.authorValentijn, E.A.
dc.creator.authorValenziano, L.
dc.creator.authorVassallo, T.
dc.creator.authorVeropalumbo, A.
dc.creator.authorWang, Y.
dc.creator.authorWeller, J.
dc.creator.authorZamorani, G.
dc.creator.authorZoubian, J.
dc.creator.authorColodro-Conde, C.
dc.creator.authorScottez, V.
cristin.unitcode185,15,3,0
cristin.unitnameInstitutt for teoretisk astrofysikk
cristin.ispublishedtrue
cristin.fulltextoriginal
cristin.qualitycode2
dc.identifier.cristin2264951
dc.identifier.bibliographiccitationinfo:ofi/fmt:kev:mtx:ctx&ctx_ver=Z39.88-2004&rft_val_fmt=info:ofi/fmt:kev:mtx:journal&rft.jtitle=Astronomy and Astrophysics (A & A)&rft.volume=683&rft.spage=&rft.date=2024
dc.identifier.jtitleAstronomy and Astrophysics (A & A)
dc.identifier.volume683
dc.identifier.pagecount23
dc.identifier.doihttps://doi.org/10.1051/0004-6361/202347833
dc.subject.nviVDP::Astrofysikk, astronomi: 438
dc.type.documentTidsskriftartikkel
dc.type.peerreviewedPeer reviewed
dc.source.issn0004-6361
dc.type.versionPublishedVersion
cristin.articleidA240
dc.relation.projectNFR/325113
dc.relation.projectNFR/287772


Files in this item

Appears in the following Collection

Hide metadata

Attribution 4.0 International
This item's license is: Attribution 4.0 International