Euclid preparation: VI. verifying the performance of cosmic shear experiments
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Paykari, P.
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Kitching, T.
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Hoekstra, H.
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Azzollini, R.
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Cardone, V. F.
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Cropper, M.
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Duncan, C. A. J.
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Kannawadi, A.
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Miller, L.
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Aussel, H.
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Conti, I. F.
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Auricchio, N.
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Baldi, M.
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Bardelli, S.
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Biviano, A.
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Bonino, D.
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Borsato, E.
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Bozzo, E.
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Branchini, E.
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Brau Nogue, S.
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Brescia, M.
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Brinchmann, J.
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Burigana, C.
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Camera, S.
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Capobianco, V.
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Carbone, C.
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Carretero, J.
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Castander, F. J.
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Castellano, M.
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Cavuoti, S.
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Charles, Y.
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Cledassou, R.
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Colodro Conde, C.
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Congedo, G.
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Conselice, C.
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Conversi, L.
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Copin, Y.
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Coupon, J.
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Courtois, H. M.
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Da Silva, A.
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Dupac, J.
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Fabbian, G.
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Farrens, S.
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Ferreira, P. G.
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Fosalba, P.
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Fourmanoit, N.
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Frailis, M.
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Fumana, M.
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Galeotta, S.
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Garilli, B.
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Gillard, W.
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Gillis, B. R.
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Giocoli, C.
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Gracía Carpio, J.
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Grupp, F.
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Hormuth, F.
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Ilic, S.
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Israel, H.
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Jahnke, K.
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Keihanen, E.
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Kermiche, S.
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Kilbinger, M.
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Kirkpatrick, C. C.
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Kubik, B.
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Kunz, M.
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Kurki Suonio, H.
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Laureijs, R.
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Le Mignant, D.
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Ligori, S.
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Lilje, P. B.
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Lloro, I.
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Maciaszek, T.
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Maiorano, E.
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Marggraf, O.
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Markovic, K.
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Martinet, N.
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Marulli, F.
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Massey, R.
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Mauri, N.
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Medinaceli, E.
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Mei, S.
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Mellier, Y.
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Meneghetti, M.
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Metcalf, R. B.
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Moresco, M.
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Moscardini, L.
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Munari, E.
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Neissner, C.
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Nichol, R. C.
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Niemi, S.
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Nutma, T.
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Padilla, C.
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Paltani, S.
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Pasian, F.
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Pettorino, V.
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Pires, S.
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Polenta, G.
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Raison, F.
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Renzi, A.
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Rhodes, J.
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Romelli, E.
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Roncarelli, M.
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Rossetti, E.
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Saglia, R.
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Sakr, Z.
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Sanchez, A. G.
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Sapone, Domenico
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Scaramella, R.
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Schneider, P.
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Schrabback, T.
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Scottez, V.
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Secroun, A.
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Serrano, S.
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Sirignano, C.
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Sirri, G.
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Stanco, L.
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Starck, J. L.
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Sureau, F.
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Tallada Crespi, P.
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Taylor, A.
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Tenti, M.
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Terreno, I.
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Toledo Moreo, M.
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Torradeflot, F.
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Valenziano, L.
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Vannier, M.
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Vassallo, T.
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Zoubian, J.
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Zucca, E.
Admission date
dc.date.accessioned
2020-06-04T21:21:27Z
Available date
dc.date.available
2020-06-04T21:21:27Z
Publication date
dc.date.issued
2020
Cita de ítem
dc.identifier.citation
A&A 635, A139 (2020)
es_ES
Identifier
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10.1051/0004-6361/201936980
Identifier
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https://repositorio.uchile.cl/handle/2250/175250
Abstract
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Aims. Our aim is to quantify the impact of systematic effects on the inference of cosmological parameters from cosmic shear.Methods. We present an "end-to-end" approach that introduces sources of bias in a modelled weak lensing survey on a galaxy-by-galaxy level. We propagated residual biases through a pipeline from galaxy properties at one end to cosmic shear power spectra and cosmological parameter estimates at the other end. We did this to quantify how imperfect knowledge of the pipeline changes the maximum likelihood values of dark energy parameters.Results. We quantify the impact of an imperfect correction for charge transfer inefficiency and modelling uncertainties of the point spread function for Euclid, and find that the biases introduced can be corrected to acceptable levels.
es_ES
Patrocinador
dc.description.sponsorship
Science & Technology Facilities Council (STFC)
Royal Society of London
Netherlands Organization for Scientific Research (NWO)
639.043.512
UK Space Agency
ST/N001796/1
Italian Space Agency (ASI)
I/031/10/0
UK Science & Technology Facilities Council
ST/S000437/1
Swiss National Science Foundation (SNSF)
European Research Council (ERC)
617656
ASI/INAF/I/023/12/0
MR/S016066/1