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  Dark Energy Survey Year 3 results: Cosmology from combined galaxy clustering and lensing validation on cosmological simulations

DeRose, J., Wechsler, R. H., Becker, M. R., Rykoff, E. S., Pandey, S., MacCrann, N., et al. (2022). Dark Energy Survey Year 3 results: Cosmology from combined galaxy clustering and lensing validation on cosmological simulations. Physical Review D, 105(12): 123520. doi:10.1103/PhysRevD.105.123520.

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DeRose, J., Author
Wechsler, R. H., Author
Becker, M. R., Author
Rykoff, E. S., Author
Pandey, S., Author
MacCrann, N., Author
Amon, A., Author
Myles, J., Author
Krause, E., Author
Gruen, D., Author
Jain, B., Author
Troxel, M. A., Author
Prat, J., Author
Alarcon, A., Author
Sánchez, C., Author
Blazek, J., Author
Crocce, M., Author
Giannini, G., Author
Gatti, M., Author
Bernstein, G. M., Author
Zuntz, J., AuthorDodelson, S., AuthorFang, X., AuthorFriedrich, O., AuthorSecco, L. F., AuthorElvin-Poole, J., AuthorPorredon, A., AuthorEverett, S., AuthorChoi, A., AuthorHarrison, I., AuthorCordero, J., AuthorRodriguez-Monroy, M., AuthorMcCullough, J., AuthorCawthon, R., AuthorChen, A., AuthorAlves, O., AuthorAndrade-Oliveira, F., AuthorBechtol, K., AuthorCamacho, H., AuthorCampos, A., AuthorRosell, A. Carnero, AuthorKind, M. Carrasco, AuthorDiehl, H. T., AuthorDrlica-Wagner, A., AuthorEckert, K., AuthorEifler, T. F., AuthorGruendl, R. A., AuthorHartley, W. G., AuthorHuang, H., AuthorHuff, E. M., AuthorKuropatkin, N., AuthorRaveri, M., AuthorRosenfeld, R., AuthorRoss, A. J., AuthorSanchez, J., AuthorSevilla-Noarbe, I., AuthorSheldon, E., AuthorYanny, B., AuthorYin, B., AuthorZhang, Y., AuthorFosalba, P., AuthorAguena, M., AuthorAllam, S., AuthorAnnis, J., AuthorAvila, S., AuthorBacon, D., AuthorBhargava, S., AuthorBrooks, D., AuthorBuckley-Geer, E., AuthorBurke, D. L., AuthorCarretero, J., AuthorCastander, F. J., AuthorChang, C., AuthorCostanzi, M., Authorda Costa, L. N., AuthorPereira, M. E. S., AuthorVicente, J. De, AuthorDesai, S., AuthorDietrich, J. P., AuthorDoel, P., AuthorEvrard, A. E., AuthorFerrero, I., AuthorFert´e, A., AuthorFlaugher, B., AuthorFrieman, J., AuthorGarcía-Bellido, J., AuthorGaztanaga, E., AuthorGiannantonio, T., AuthorGschwend, J., AuthorGutierrez, G., AuthorHinton, S. R., AuthorHollowood, D. L., AuthorHonscheid, K., AuthorHuterer, D., AuthorJames, D. J., AuthorKuehn, K., AuthorLahav, O., AuthorLima, M., AuthorMaia, M. A. G., AuthorMarshall, J. L., AuthorMelchior, P., AuthorMenanteau, F., AuthorMiquel, R., AuthorMohr, J. J.1, Author           Morgan, R., AuthorPalmese, A., AuthorPaz-Chinchón, F., AuthorPetravick, D., AuthorPieres, A., AuthorMalagón, A. A. Plazas, AuthorSanchez, E., AuthorScarpine, V., AuthorSerrano, S., AuthorSmith, M., AuthorSoares-Santos, M., AuthorSuchyta, E., AuthorTarle, G., AuthorThomas, D., AuthorTo, C., AuthorVarga, T. N.1, Author            more..
Affiliations:
1Optical and Interpretative Astronomy, MPI for Extraterrestrial Physics, Max Planck Society, ou_159895              

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 Abstract: We present a validation of the Dark Energy Survey Year 3 (DES Y3) 3×2-point analysis choices by testing them on Buzzard2.0, a new suite of cosmological simulations that is tailored for the testing and validation of combined galaxy clustering and weak-lensing analyses. We show that the buzzard2.0 simulations accurately reproduce many important aspects of the DES Y3 data, including photometric redshift and magnitude distributions, and the relevant set of two-point clustering and weak-lensing statistics. We then show that our model for the 3×2-point data vector is accurate enough to recover the true cosmology in simulated surveys assuming the true redshift distributions for our source and lens samples, demonstrating robustness to uncertainties in the modeling of the nonlinear matter power spectrum, nonlinear galaxy bias, and higher-order lensing corrections. Additionally, we demonstrate for the first time that our photometric redshift calibration methodology, including information from photometry, spectroscopy, clustering cross-correlations, and galaxy–galaxy lensing ratios, is accurate enough to recover the true cosmology in simulated surveys in the presence of realistic photometric redshift uncertainties.

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 Dates: 2022-06-17
 Publication Status: Published online
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 Identifiers: DOI: 10.1103/PhysRevD.105.123520
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Title: Physical Review D
  Other : Phys. Rev. D.
Source Genre: Journal
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Publ. Info: Lancaster, Pa. : American Physical Society
Pages: - Volume / Issue: 105 (12) Sequence Number: 123520 Start / End Page: - Identifier: ISSN: 0556-2821
CoNE: https://pure.mpg.de/cone/journals/resource/111088197762258