Galaxy cluster matter profiles

IF 5.8 2区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS Astronomy & Astrophysics Pub Date : 2025-03-05 DOI:10.1051/0004-6361/202451516
A. Singh, J. J. Mohr, C. T. Davies, S. Bocquet, S. Grandis, M. Klein, J. L. Marshall, M. Aguena, S. S. Allam, O. Alves, F. Andrade-Oliveira, D. Bacon, S. Bhargava, D. Brooks, A. Carnero Rosell, J. Carretero, M. Costanzi, L. N. da Costa, M. E. S. Pereira, S. Desai, H. T. Diehl, P. Doel, S. Everett, B. Flaugher, J. Frieman, J. García-Bellido, E. Gaztanaga, R. A. Gruendl, G. Gutierrez, D. L. Hollowood, K. Honscheid, D. J. James, K. Kuehn, M. Lima, J. Mena-Fernández, F. Menanteau, R. Miquel, J. Myles, A. Pieres, A. K. Romer, S. Samuroff, E. Sanchez, D. Sanchez Cid, I. Sevilla-Noarbe, M. Smith, E. Suchyta, M. E. C. Swanson, G. Tarle, C. To, D. L. Tucker, V. Vikram, N. Weaverdyck, P. Wiseman
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Abstract

We present a study of the weak lensing inferred matter profiles ΔΣ(R) of 698 South Pole Telescope (SPT) thermal Sunyaev-Zel’dovich effect (tSZE) selected and MCMF optically confirmed galaxy clusters in the redshift range 0.25 < z < 0.94 that have associated weak gravitational lensing shear profiles from the Dark Energy Survey (DES). Rescaling these profiles to account for the mass dependent size and the redshift dependent density produces average rescaled matter profiles ΔΣ(R/R200c)/(ρcritR200c) with a lower dispersion than the unscaled ΔΣ(R) versions, indicating a significant degree of self-similarity. Galaxy clusters from hydrodynamical simulations also exhibit matter profiles that suggest a high degree of self-similarity, with RMS variation among the average rescaled matter profiles with redshift and mass falling by a factor of approximately six and 23, respectively, compared to the unscaled average matter profiles. We employed this regularity in a new Bayesian method for weak lensing mass calibration that employs the so-called cluster mass posterior , which describes the individual cluster masses given their tSZE ( ) and optical ( , z) observables. This method enables simultaneous constraints on richness λ-mass and tSZE detection significance ζ-mass relations using average rescaled cluster matter profiles. We validated the method using realistic mock datasets and present observable-mass relation constraints for the SPT×DES sample, where we constrained the amplitude, mass trend, redshift trend, and intrinsic scatter. Our observable-mass relation results are in agreement with the mass calibration derived from the recent cosmological analysis of the SPT×DES data based on a cluster-by-cluster lensing calibration. Our new mass calibration technique offers a higher efficiency when compared to the single cluster calibration technique. We present new validation tests of the observable-mass relation that indicate the underlying power-law form and scatter are adequate to describe the real cluster sample but that also suggest a redshift variation in the intrinsic scatter of the λ-mass relation may offer a better description. In addition, the average rescaled matter profiles offer high signal-to-noise ratio (S/N) constraints on the shape of real cluster matter profiles, which are in good agreement with available hydrodynamical ΛCDM simulations. This high S/N profile contains information about baryon feedback, the collisional nature of dark matter, and potential deviations from general relativity.
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星系团物质分布图
我们研究了698南极望远镜(SPT)的热Sunyaev-Zel 'dovich效应(tSZE)选择和MCMF光学确认的红移范围为0.25 < z < 0.94的星系团的弱透镜推断物质谱ΔΣ(R),这些星系团与暗能量调查(DES)的弱引力透镜剪切谱相关。重新缩放这些谱线以考虑质量依赖的尺寸和红移依赖的密度,产生平均的重新缩放的物质谱线ΔΣ(R/R200c)/(ρcritR200c),其色散比未缩放的ΔΣ(R)版本低,表明显著程度的自相似性。来自流体动力学模拟的星系团也显示出高度自相似性的物质剖面,与未缩放的平均物质剖面相比,红移和质量的平均重标度物质剖面的均数变异分别约为6和23倍。我们在弱透镜质量校准的新贝叶斯方法中采用了这种规律,该方法采用了所谓的星团质量后验,它描述了给定其tSZE()和光学(,z)观测值的单个星团质量。该方法可以同时约束丰富度λ-质量和tSZE检测显著性ζ-质量关系,使用平均重标度的簇物质剖面。我们使用真实的模拟数据集验证了该方法,并为SPT×DES样本提供了可观测质量关系约束,其中我们约束了振幅、质量趋势、红移趋势和本征散射。我们的观测-质量关系结果与最近基于星系团透镜校准的SPT×DES数据的宇宙学分析得出的质量校准一致。与单簇校准技术相比,我们的新质量校准技术提供了更高的效率。我们提出了新的可观测-质量关系的验证测试,表明潜在的幂律形式和散射足以描述真实的集群样本,但也表明λ-质量关系的固有散射的红移变化可能提供更好的描述。此外,平均重标度的物质剖面对真实团簇物质剖面的形状提供了高信噪比(S/N)约束,这与现有的流体动力学ΛCDM模拟结果很好地吻合。这种高信噪比剖面包含了关于重子反馈、暗物质的碰撞性质以及与广义相对论的潜在偏差的信息。
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来源期刊
Astronomy & Astrophysics
Astronomy & Astrophysics 地学天文-天文与天体物理
CiteScore
10.20
自引率
27.70%
发文量
2105
审稿时长
1-2 weeks
期刊介绍: Astronomy & Astrophysics is an international Journal that publishes papers on all aspects of astronomy and astrophysics (theoretical, observational, and instrumental) independently of the techniques used to obtain the results.
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