论文标题
nihao XXVIII:AGN对暗物质浓度和出色运动学的副作用
NIHAO XXVIII: Collateral effects of AGN on dark matter concentration and stellar kinematics
论文作者
论文摘要
尽管在星系模拟中需要进行活跃的银河核(AGN)反馈以调节恒星形成,但可以预期对中央星系的光环和恒星运动学的暗物质分布的进一步下游影响。我们结合了对一百个天体物理对象(NIHAO)的数值研究中有和没有AGN物理的星系的模拟,以研究AGN对宿主星系的暗物质谱和中央恒星旋转的影响。具体而言,我们研究了浓度 - 纳洛质量($ c-m $)关系和恒星自旋参数($λ_r$)如何受AGN反馈的影响。我们发现,AGN物理学对于降低模拟大量($ \ gtrsim 10^{12} $ M $ _ \ odot $)星系的中心密度至关重要,并使他们的浓度与Spitzer光度测定和准确旋转曲线(SPARC)样本的结果一致。同样,AGN反馈在重现慢速和快速旋转器之间的二分法中具有关键作用,如Atlas $^{3 \ text {d}} $ usevery所观察到的。没有AGN反馈引起的恒星形成,快速旋转器的数量强烈超过了观察性约束。我们的研究表明,有几种附带效应支持AGN反馈在银河形成中的重要性,这些效应可用于在数值模拟中限制其实现。
Although active galactic nuclei (AGN) feedback is required in simulations of galaxies to regulate star formation, further downstream effects on the dark matter distribution of the halo and stellar kinematics of the central galaxy can be expected. We combine simulations of galaxies with and without AGN physics from the Numerical Investigation of a Hundred Astrophysical Objects (NIHAO) to investigate the effect of AGN on the dark matter profile and central stellar rotation of the host galaxies. Specifically, we study how the concentration-halo mass ($c-M$) relation and the stellar spin parameter ($λ_R$) are affected by AGN feedback. We find that AGN physics is crucial to reduce the central density of simulated massive ($\gtrsim 10^{12}$ M$_\odot$) galaxies and bring their concentration to agreement with results from the Spitzer Photometry & Accurate Rotation Curves (SPARC) sample. Similarly, AGN feedback has a key role in reproducing the dichotomy between slow and fast rotators as observed by the ATLAS$^{3\text{D}}$ survey. Without star formation suppression due to AGN feedback, the number of fast rotators strongly exceeds the observational constraints. Our study shows that there are several collateral effects that support the importance of AGN feedback in galaxy formation, and these effects can be used to constrain its implementation in numerical simulations.