论文标题

欧几里得:非线性处方对弱透镜宇宙剪切的宇宙学参数估计的影响

Euclid: impact of nonlinear prescriptions on cosmological parameter estimation from weak lensing cosmic shear

论文作者

Martinelli, M., Tutusaus, I., Archidiacono, M., Camera, S., Cardone, V. F., Clesse, S., Casas, S., Casarini, L., Mota, D. F., Hoekstra, H., Carbone, C., Ilić, S., Kitching, T. D., Pettorino, V., Pourtsidou, A., Sakr, Z., Sapone, D., Auricchio, N., Balestra, A., Boucaud, A., Branchini, E., Brescia, M., Capobianco, V., Carretero, J., Castellano, M., Cavuoti, S., Cimatti, A., Cledassou, R., Congedo, G., Conselice, C., Conversi, L., Corcione, L., Costille, A., Douspis, M., Dubath, F., Dusini, S., Fabbian, G., Fosalba, P., Frailis, M., Franceschi, E., Gillis, B., Giocoli, C., Grupp, F., Guzzo, L., Holmes, W., Hormuth, F., Jahnke, K., Kermiche, S., Kiessling, A., Kilbinger, M., Kunz, M., Kurki-Suonio, H., Ligori, S., Lilje, P. B., Lloro, I., Maiorano, E., Marggraf, O., Markovic, K., Massey, R., Meneghetti, M., Meylan, G., Morin, B., Moscardini, L., Niemi, S., Padilla, C., Paltani, S., Pasian, F., Pedersen, K., Pires, S., Polenta, G., Poncet, M., Popa, L., Raison, F., Rhodes, J., Roncarelli, M., Rossetti, E., Saglia, R., Schneider, P., Secroun, A., Serrano, S., Sirignano, C., Sirri, G., Starck, J. -L., Sureau, F., Taylor, A. N., Tereno, I., Toledo-Moreo, R., Valentijn, E. A., Valenziano, L., Vassallo, T., Wang, Y., Welikala, N., Zacchei, A., Zoubian, J.

论文摘要

即将进行的调查将以无预示的精度来绘制大规模结构的增长,从而提高我们对宇宙黑暗部门的理解。不幸的是,许多宇宙学信息都是由小尺度编码的,其中暗物质的聚类和天体物理反馈过程的影响尚未完全了解。这可能会偏向宇宙参数的估计值,我们在这里研究这些参数以进行模拟欧几里得宇宙剪切和普朗克宇宙微波背景数据的联合分析。我们使用不同的实现来对信号进行小尺度的建模,并发现它们会产生明显不同的预测。此外,不同的非线性校正会导致偏见的参数估计值,尤其是当分析扩展到高度非线性方案中时,哈勃常数,$ h_0 $和聚类幅度$σ_8$都影响了最大的影响。因此,如果我们要用更多更好的数据来解决当前的张力,则需要改进非线性量表的建模。对于给定的非线性功率谱的给定处方,使用不同的baryon物理校正并不会显着影响欧几里得的精度,但是忽略这些校正的确会导致宇宙学参数的巨大偏见。为了从欧几里得宇宙剪切数据中提取对宇宙学参数的精确和公正的约束,因此,必须提高解释非线性结构形成的食谱的准确性,以及对重新分配桶的天体物理过程的影响的建模。

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 by the 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 nonlinear corrections lead to biased parameter estimates, especially when the analysis is extended into the highly nonlinear regime, with both the Hubble constant, $H_0$, and the clustering amplitude, $σ_8$, affected the most. Improvements in the modelling of nonlinear scales will therefore be needed if we are to resolve the current tension with more and better data. For a given prescription for the nonlinear 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 nonlinear structure formation, as well as the modelling of the impact of astrophysical processes that redistribute the baryons.

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