弱透镜与动力学苏尼亚耶夫-泽尔多维奇效应的结合:重子反馈研究

IF 4.7 3区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS
L Bigwood, A Amon, A Schneider, J Salcido, I G McCarthy, C Preston, D Sanchez, D Sijacki, E Schaan, S Ferraro, N Battaglia, A Chen, S Dodelson, A Roodman, A Pieres, A Ferté, A Alarcon, A Drlica-Wagner, A Choi, A Navarro-Alsina, A Campos, A J Ross, A Carnero Rosell, B Yin, B Yanny, C Sánchez, C Chang, C Davis, C Doux, D Gruen, E S Rykoff, E M Huff, E Sheldon, F Tarsitano, F Andrade-Oliveira, G M Bernstein, G Giannini, H T Diehl, H Huang, I Harrison, I Sevilla-Noarbe, I Tutusaus, J Elvin-Poole, J McCullough, J Zuntz, J Blazek, J DeRose, J Cordero, J Prat, J Myles, K Eckert, K Bechtol, K Herner, L F Secco, M Gatti, M Raveri, M Carrasco Kind, M R Becker, M A Troxel, M Jarvis, N MacCrann, O Friedrich, O Alves, P-F Leget, R Chen, R P Rollins, R H Wechsler, R A Gruendl, R Cawthon, S Allam, S L Bridle, S Pandey, S Everett, T Shin, W G Hartley, X Fang, Y Zhang, M Aguena, J Annis, D Bacon, E Bertin, S Bocquet, D Brooks, J Carretero, F J Castander, L N da Costa, M E S Pereira, J De Vicente, S Desai, P Doel, I Ferrero, B Flaugher, J Frieman, J García-Bellido, E Gaztanaga, G Gutierrez, S R Hinton, D L Hollowood, K Honscheid, D Huterer, D J James, K Kuehn, O Lahav, S Lee, J L Marshall, J Mena-Fernández, R Miquel, J Muir, M Paterno, A A Plazas Malagón, A Porredon, A K Romer, S Samuroff, E Sanchez, D Sanchez Cid, M Smith, M Soares-Santos, E Suchyta, M E C Swanson, G Tarle, C To, N Weaverdyck, J Weller, P Wiseman, M Yamamoto
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引用次数: 0

摘要

从弱透镜测量中提取精确的宇宙学需要对非线性物质功率谱进行建模,由于重子反馈过程,非线性物质功率谱在小尺度上受到抑制。然而,流体力学星系形成模拟对这种效应的幅度和范围的预测大相径庭。我们利用暗能量巡天第 3 年弱透镜(WL)和阿塔卡马宇宙学望远镜 DR5 运动学 Sunyaev-Zel'dovich(kSZ)的测量结果,通过一个灵活的分析模型 "重子化 "来联合约束宇宙学和天体物理学重子反馈参数。首先,仅使用 WL,我们将重子化的 S8 约束与模拟校准的光环模型、基于模拟的仿真器模型以及在小角尺度上摒弃 WL 测量的方法进行了比较。我们发现,模型的灵活性可以改变 S8 的值并降低不确定性。kSZ 为天体物理参数提供了额外的约束,WL + kSZ 联合分析约束 $S_8=0.823^{+0.019}_{-0.020}$。我们利用 WL + kSZ 测量了非线性物质功率谱的抑制情况,并约束了比大多数流体力学模拟预测更为极端的平均反馈情况。我们对重子分数和气体质量分数进行了约束,发现它们普遍低于 X 射线观测和模拟预测的结果。我们的结论是,WL + kSZ 测量为建立星系周围气体影响的跨观测一致性图像提供了一个新的补充基准。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Weak lensing combined with the kinetic Sunyaev Zel’dovich effect: A study of baryonic feedback
Extracting precise cosmology from weak lensing surveys requires modelling the non-linear matter power spectrum, which is suppressed at small scales due to baryonic feedback processes. However, hydrodynamical galaxy formation simulations make widely varying predictions for the amplitude and extent of this effect. We use measurements of Dark Energy Survey Year 3 weak lensing (WL) and Atacama Cosmology Telescope DR5 kinematic Sunyaev-Zel’dovich (kSZ) to jointly constrain cosmological and astrophysical baryonic feedback parameters using a flexible analytical model, ‘baryonification’. First, using WL only, we compare the S8 constraints using baryonification to a simulation-calibrated halo model, a simulation-based emulator model and the approach of discarding WL measurements on small angular scales. We find that model flexibility can shift the value of S8 and degrade the uncertainty. The kSZ provides additional constraints on the astrophysical parameters, with the joint WL + kSZ analysis constraining $S_8=0.823^{+0.019}_{-0.020}$. We measure the suppression of the non-linear matter power spectrum using WL + kSZ and constrain a mean feedback scenario that is more extreme than the predictions from most hydrodynamical simulations. We constrain the baryon fractions and the gas mass fractions and find them to be generally lower than inferred from X-ray observations and simulation predictions. We conclude that the WL + kSZ measurements provide a new and complementary benchmark for building a coherent picture of the impact of gas around galaxies across observations.
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来源期刊
CiteScore
9.10
自引率
37.50%
发文量
3198
审稿时长
3 months
期刊介绍: Monthly Notices of the Royal Astronomical Society is one of the world''s leading primary research journals in astronomy and astrophysics, as well as one of the longest established. It publishes the results of original research in positional and dynamical astronomy, astrophysics, radio astronomy, cosmology, space research and the design of astronomical instruments.
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