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  Euclid: Impact of non-linear and baryonic feedback prescriptions on cosmological parameter estimation from weak lensing cosmic shear

Martinelli, M., Tutusaus, I., Archidiacono, M., Camera, S., Cardone, V. F., Clesse, S., et al. (2021). Euclid: Impact of non-linear and baryonic feedback prescriptions on cosmological parameter estimation from weak lensing cosmic shear. Astronomy and Astrophysics, 649: A100. doi:10.1051/0004-6361/202039835.

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Euclid Impact of non-linear and baryonic feedback prescriptions on cosmological parameter estimation from weak lensing cosmic shear.pdf (Any fulltext), 4MB
 
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Martinelli, M., Author
Tutusaus, I., Author
Archidiacono, M., Author
Camera, S., Author
Cardone, V. F., Author
Clesse, S., Author
Casas, S., Author
Casarini, L., Author
Mota, D. F., Author
Hoekstra, H., Author
Carbone, C., Author
Ili´c, S., Author
Kitching, T. D., Author
Pettorino, V., Author
Pourtsidou, A., Author
Sakr, Z., Author
Sapone, D., Author
Auricchio, N., Author
Balestra, A., Author
Boucaud, A., Author
Branchini, E., AuthorBrescia, M., AuthorCapobianco, V., AuthorCarretero, J., AuthorCastellano, M., AuthorCavuoti, S., AuthorCimatti, A., AuthorCledassou, R., AuthorCongedo, G., AuthorConselice, C., AuthorConversi, L., AuthorCorcione, L., AuthorCostille, A., AuthorDouspis, M., AuthorDubath, F., AuthorDusini, S., AuthorFabbian, G., AuthorFosalba, P., AuthorFrailis, M., AuthorFranceschi, E., AuthorGillis, B., AuthorGiocoli, C., AuthorGrupp, F.1, Author           Guzzo, L., AuthorHolmes, W., AuthorHormuth, F., AuthorJahnke, K., AuthorKermiche, S., AuthorKiessling, A., AuthorKilbinger, M., AuthorKunz, M., AuthorKurki-Suonio, H., AuthorLigori, S., AuthorLilje, P. B., AuthorLloro, I., AuthorMaiorano, E., AuthorMarggraf, O., AuthorMarkovic, K., AuthorMassey, R., AuthorMeneghetti, M., AuthorMeylan, G., AuthorMorin, B., AuthorMoscardini, L., AuthorNiemi, S., AuthorPadilla, C., AuthorPaltani, S., AuthorPasian, F., AuthorPedersen, K., AuthorPires, S., AuthorPolenta, G., AuthorPoncet, M., AuthorPopa, L., AuthorRaison, F.1, Author           Rhodes, J., AuthorRoncarelli, M., AuthorRossetti, E., AuthorSaglia, R.1, Author           Schneider, P., AuthorSecroun, A., AuthorSerrano, S., AuthorSirignano, C., AuthorSirri, G., AuthorStarck, J.-L., AuthorSureau, F., AuthorTaylor, A. N., AuthorTereno, I., AuthorToledo-Moreo, R., AuthorValentijn, E. A., AuthorValenziano, L., AuthorVassallo, T., AuthorWang, Y., AuthorWelikala, N., AuthorZacchei, A., AuthorZoubian, J., Author more..
Affiliations:
1Optical and Interpretative Astronomy, MPI for Extraterrestrial Physics, Max Planck Society, ou_159895              

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 Abstract: Upcoming surveys will map the growth of large-scale structure with unprecented precision, improving our understanding of the dark sector of the Universe. Unfortunately, much of the cosmological information is encoded on small scales, where the clustering of dark matter and the effects of astrophysical feedback processes are not fully understood. This can bias the estimates of cosmological parameters, which we study here for a joint analysis of mock Euclid cosmic shear and Planck cosmic microwave background data. We use different implementations for the modelling of the signal on small scales and find that they result in significantly different predictions. Moreover, the different non-linear corrections lead to biased parameter estimates, especially when the analysis is extended into the highly non-linear regime, with the Hubble constant, H0, and the clustering amplitude, σ8, affected the most. Improvements in the modelling of non-linear scales will therefore be needed if we are to resolve the current tension with more and better data. For a given prescription for the non-linear power spectrum, using different corrections for baryon physics does not significantly impact the precision of Euclid, but neglecting these correction does lead to large biases in the cosmological parameters. In order to extract precise and unbiased constraints on cosmological parameters from Euclid cosmic shear data, it is therefore essential to improve the accuracy of the recipes that account for non-linear structure formation, as well as the modelling of the impact of astrophysical processes that redistribute the baryons.

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Language(s): eng - English
 Dates: 2021-05-20
 Publication Status: Published online
 Pages: -
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 Table of Contents: -
 Rev. Type: Peer
 Identifiers: DOI: 10.1051/0004-6361/202039835
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Title: Astronomy and Astrophysics
Source Genre: Journal
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Publ. Info: EDP Sciences
Pages: - Volume / Issue: 649 Sequence Number: A100 Start / End Page: - Identifier: ISSN: 00046361