气体热力学与星系运动学:eROSITA星系团的联合质量测量

IF 5.4 2区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS
Pengfei Li, Ang Liu, Matthias Kluge, Johan Comparat, Yong Tian, Mariana P. Júlio, Marcel S. Pawlowski, Jeremy Sanders, Esra Bulbul, Axel Schwope, Vittorio Ghirardini, Xiaoyuan Zhang, Yunus Emre Bahar, Miriam E. Ramos-Ceja, Fabian Balzer, Christian Garrel
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引用次数: 0

摘要

星系团的质量是探测星系团宇宙学和检验万有引力理论的一个关键量,但其测量可能存在偏差,因为要利用任何方法,都不可避免地要有一些假设。在本文中,我们采用并比较了星系团的两种质量代用指标:星系团内介质的热力学和成员星系的运动学。我们从第一次 SRG/eROSITA 全天空巡天(eRASS1)的星系团目录中选择了 22 个有足够光学和近红外观测数据的星系团。我们为每个星系团生成了能量范围为(0.3, 7)keV 的多波段图像,并采用一种不假定暗物质晕模型的参数方法得出了它们的温度曲线、气体质量曲线和静压质量曲线。利用从多个巡天观测中收集到的经光谱学证实的成员星系,我们对它们的动态质量剖面进行了球形杰恩斯方程数值求解。我们的结果量化了动力学质量与视线速度色散之间的相关性,即 log Mdyn = (1.296 ± 0.001)log(σlos2rproj/G)-(3.87 ± 0.23),均方根(rms)散度为 0.14 dex。我们发现,这两个质量代用指标得出的总质量大致相同,没有观测到系统偏差。因此,σ8张力并不是静水质量或弱透镜剪切所特有的,它也会随着星系运动学的变化而出现。有趣的是,流体静力学质量与动力学质量比在大半径范围内略有下降,这可能是外围星系吸积的证据。我们还将静水质量与最新的弱透镜质量进行了比较。比较结果表明,弱透镜质量比我们的静水质量高出 110%。这也许可以解释为什么利用 eRASS1 星团进行的最新测量得出的 σ8 值明显大于之前文献中的几乎所有估计值。最后,我们检验了在盘状星系中建立的径向加速度关系。我们利用三个独立的质量代用指标,首次证实了星系团内部区域的重子缺失问题。由于正在进行和计划进行的巡天观测提供了更深入的X射线观测和更多星系团成员的星系光谱,我们希望在不久的将来把研究扩展到星系团的外围。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Gas thermodynamics meets galaxy kinematics: Joint mass measurements for eROSITA galaxy clusters
The mass of galaxy clusters is a critical quantity for probing cluster cosmology and testing theories of gravity, but its measurement could be biased, given that assumptions are inevitable in order to make use of any approach. In this paper, we employ and compare two mass proxies for galaxy clusters: thermodynamics of the intracluster medium and kinematics of member galaxies. We selected 22 galaxy clusters from the cluster catalog in the first SRG/eROSITA All-Sky Survey (eRASS1) that have sufficient optical and near-infrared observations. We generated multiband images in the energy range of (0.3, 7) keV for each cluster, and derived their temperature profiles, gas mass profiles, and hydrostatic mass profiles using a parametric approach that does not assume dark matter halo models. With spectroscopically confirmed member galaxies collected from multiple surveys, we numerically solved the spherical Jeans equation for their dynamical mass profiles. Our results quantify the correlation between dynamical mass and the line-of-sight velocity dispersion, log Mdyn = (1.296 ± 0.001)log(σlos2rproj/G)−(3.87 ± 0.23), with a root mean square (rms) scatter of 0.14 dex. We find that the two mass proxies lead to roughly the same total mass, with no observed systematic bias. As such, the σ8 tension is not specific to hydrostatic mass or weak lensing shears, but also appears with galaxy kinematics. Interestingly, the hydrostatic-to-dynamical mass ratios decrease slightly toward large radii, which could possibly be evidence for accreting galaxies in the outskirts. We also compared our hydrostatic masses with the latest weak lensing masses inferred with scaling relations. The comparison shows that the weak lensing mass is significantly higher than our hydrostatic mass by ∼110%. This might explain the significantly larger value of σ8 from the latest measurement using eRASS1 clusters than almost all previous estimates in the literature. Finally, we tested the radial acceleration relation established in disk galaxies. We confirm the missing baryon problem in the inner region of galaxy clusters using three independent mass proxies for the first time. As ongoing and planned surveys are providing deeper X-ray observations and more galaxy spectra for cluster members, we expect to extend the study to cluster outskirts in the near future.
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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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