论文标题

欧几里得:从void透射互相关的预测

Euclid: Forecasts from the void-lensing cross-correlation

论文作者

Bonici, M., Carbone, C., Davini, S., Vielzeuf, P., Paganin, L., Cardone, V., Hamaus, N., Pisani, A., Hawken, A. J., Kovacs, A., Nadathur, S., Contarini, S., Verza, G., Tutusaus, I., Marulli, F., Moscardini, L., Aubert, M., Giocoli, C., Pourtsidou, A., Camera, S., Escoffier, S., Caminata, A., Martinelli, M., Pallavicini, M., Pettorino, V., Sakr, Z., Sapone, D., Testera, G., Tosi, S., Yankelevich, V., Amara, A., Auricchio, N., Baldi, M., Bonino, D., Branchini, E., Brescia, M., Brinchmann, J., Capobianco, V., Carretero, J., Castellano, M., Cavuoti, S., Cledassou, R., Congedo, G., Conversi, L., Copin, Y., Corcione, L., Courbin, F., Cropper, M., Da Silva, A., Degaudenzi, H., Douspis, M., Dubath, F., Duncan, C. A. J., Dupac, X., Dusini, S., Ealet, A., Farrens, S., Ferriol, S., Fosalba, P., Frailis, M., Franceschi, E., Fumana, M., Gomez-Alvarez, P., Garilli, B., Gillis, B., Grazian, A., Grupp, F., Guzzo, L., Haugan, S. V. H., Holmes, W., Hormuth, F., Hornstrup, A., Jahnke, K., Kummel, M., Kermiche, S., Kiessling, A., Kilbinger, M., Kunz, M., Kurki-Suonio, H., Laureijs, R., Ligori, S., Lilje, P. B., Lloro, I., Maiorano, E., Mansutti, O., Marggraf, O., Markovic, K., Massey, R., Medinaceli, E., Melchior, M., Meneghetti, M., Meylan, G., Moresco, M., Munari, E., Niemi, S. M., Padilla, C., Paltani, S., Pasian, F., Pedersen, K., Percival, W. J., Pires, S., Polenta, G., Poncet, M., Popa, L., Raison, F., Rebolo, R., Renzi, A., Rhodes, J., Rossetti, E., Saglia, R., Sartoris, B., Scodeggio, M., Secroun, A., Seidel, G., Sirignano, C., Sirri, G., Stanco, L., Starck, J. -L., Surace, C., Tallada-Crespi, P., Tavagnacco, D., Taylor, A. N., Tereno, I., Toledo-Moreo, R., Torradeflot, F., Valentijn, E. A., Valenziano, L., Wang, Y., Weller, J., Zamorani, G., Zoubian, J., Andreon, S.

论文摘要

欧几里得太空望远镜将调查由星系密集样本所追踪的大量宇宙空隙数据集。在这项工作中,我们在利用角度光度空隙聚类,星系弱透镜及其互相关时估计其预期性能。为此,我们实施了一种针对欧几里克光度数据集的空隙量身定制的Fisher矩阵方法,并介绍了包括void lensing相关性的宇宙学参数的第一个预测。我们检查了两个不同的探针设置,即悲观和乐观,包括空隙聚类和星系镜头。我们在四个模型宇宙学中进行了预测分析,考虑了CPL参数化描述的状态中微子质量不同,$m_ν$的总中微子质量,$m_ν$,$ W(z)$。我们发现,$ h $和$ω_b$上的无效聚类约束与仅星系镜头竞争,而$ n_s $降低的错误由于2D项目的参数空间中两个探针的正交性。我们还注意到,总体而言,将VIOD透镜互相关信号的包含在$ 10-15 \%$中提高了参数约束,并将关节效率集群和Galaxy Lensing for Prebit(FOM)提高了$ 10 \%$ $ $和25 \%$,分别是在处理和最佳的场景中。最后,当将光谱星系聚类进一步合并为独立探针时,我们发现,在最有竞争的情况下,相对于弱透镜和光谱星系聚类的组合,FOM增加了4倍,将FOM增加到4倍。这项工作中提出的预测表明,在欧几里得星系调查的数据分析中应利用光度数量的群集及其与星系镜头的互相关,并有望提高其约束功率,尤其是在$ h $,$ h $,$ω_b$上,中微子质量,neutrino质量和de Evolution。

The Euclid space telescope will survey a large dataset of cosmic voids traced by dense samples of galaxies. In this work we estimate its expected performance when exploiting angular photometric void clustering, galaxy weak lensing and their cross-correlation. To this aim, we implement a Fisher matrix approach tailored for voids from the Euclid photometric dataset and present the first forecasts on cosmological parameters that include the void-lensing correlation. We examine two different probe settings, pessimistic and optimistic, both for void clustering and galaxy lensing. We carry out forecast analyses in four model cosmologies, accounting for a varying total neutrino mass, $M_ν$, and a dynamical dark energy (DE) equation of state, $w(z)$, described by the CPL parametrisation. We find that void clustering constraints on $h$ and $Ω_b$ are competitive with galaxy lensing alone, while errors on $n_s$ decrease thanks to the orthogonality of the two probes in the 2D-projected parameter space. We also note that, as a whole, the inclusion of the void-lensing cross-correlation signal improves parameter constraints by $10-15\%$, and enhances the joint void clustering and galaxy lensing Figure of Merit (FoM) by $10\%$ and $25\%$, in the pessimistic and optimistic scenarios, respectively. Finally, when further combining with the spectroscopic galaxy clustering, assumed as an independent probe, we find that, in the most competitive case, the FoM increases by a factor of 4 with respect to the combination of weak lensing and spectroscopic galaxy clustering taken as independent probes. The forecasts presented in this work show that photometric void-clustering and its cross-correlation with galaxy lensing deserve to be exploited in the data analysis of the Euclid galaxy survey and promise to improve its constraining power, especially on $h$, $Ω_b$, the neutrino mass, and the DE evolution.

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