论文标题

Sunyaev-Zel'Dovich效应和插图模拟中星系,组和簇的X射线缩放关系

Sunyaev-Zel'dovich effect and X-ray scaling relations of galaxies, groups and clusters in the IllustrisTNG simulations

论文作者

Pop, Ana-Roxana, Hernquist, Lars, Nagai, Daisuke, Kannan, Rahul, Weinberger, Rainer, Springel, Volker, Vogelsberger, Mark, Nelson, Dylan, Pakmor, Rüdiger, Pillepich, Annalisa, Torrey, Paul

论文摘要

簇内培养基(ICM)的可观察热力学特性反映了AGN反馈和光环重力崩溃之间的复杂相互作用。使用插图项目的大量TNG300模拟,我们为X射线和Sunyaev-Zel'Dovich(SZ)缩放关系提供了预测,以涵盖30,000多个光环的样本,这些样本涵盖了从星系到大型星系群的广泛质量范围2 \ times 10^{15} $ m $ _ {\ odot} $])。我们使用与观察技术一致的方法对模拟光环的模拟X射线观测结果。因此,我们研究了软波段X射线光度,光谱温度,气体质量分数,$ y _ {\ rm x} $与$ y _ {\ rm sz} $之间的缩放关系,作为光环质量的函数,我们发现插画与观察的关系之间的广泛一致性。我们的结果突出了估计质量引入的散射和偏差,因此在将模拟与当前X射线观测值进行比较时,将模拟ICM属性转换为可观察到的空间的重要性。我们样品中的各种光环质量为X射线和SZ缩放关系的形状提供了新的见解,质量三个数量级。我们的发现显示了有力的证据,证明了$ z = 0 $缩放关系。我们引入了一个平稳破裂的功率定律模型,该模型可牢固捕获此断裂的位置,断裂周围的过渡区域的宽度以及对光晕质量的斜率依赖性。我们的结果为下一代的亚网格黑洞反馈模型提供了信息,并为正在进行的和未来的观察性调查提供了预测。

Observable thermodynamical properties of the intracluster medium (ICM) reflect the complex interplay between AGN feedback and the gravitational collapse of haloes. Using the large volume TNG300 simulation of the IllustrisTNG project we provide predictions for X-ray and Sunyaev-Zel'dovich (SZ) scaling relations for a sample of over 30,000 haloes that cover a wide mass range from galaxies to massive galaxy clusters ($M_{\rm 500crit}$ $\in [10^{12}$ M$_{\odot} - 2\times 10^{15}$ M$_{\odot}$]). We produce mock X-ray observations of simulated haloes using methods that are consistent with observational techniques. Thus, we investigate the scaling relations between the soft-band X-ray luminosity, spectroscopic temperature, gas mass fraction, $Y_{\rm X}$ and $Y_{\rm SZ}$ as a function of halo mass, and we find broad agreement between IllustrisTNG and the observed relations. Our results highlight the scatter and bias introduced by estimated masses, and thus the importance of converting simulated ICM properties to the observable space when comparing simulations to current X-ray observations. The wide range of halo masses in our sample provides new insights into the shape of the X-ray and SZ scaling relations across three orders of magnitude in mass. Our findings show strong evidence for a break in $z=0$ scaling relations. We introduce a smoothly broken power law model which robustly captures the location of this break, the width of the transition region around the break, as well as the slope dependence on halo mass. Our results inform the next generation of subgrid black hole feedback models and provide predictions for ongoing and future observational surveys.

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