论文标题

Nihao -xxv。在高星形阈值下冷暗物质光环的风口核转化中的融合

NIHAO -- XXV. Convergence in the cusp-core transformation of cold dark matter haloes at high star formation thresholds

论文作者

Dutton, Aaron A., Buck, Tobias, Macciò, Andrea V., Dixon, Keri L., Blank, Marvin, Obreja, Aura

论文摘要

我们使用Nihao项目的宇宙学流体动力学形成模拟来研究冷暗物质(CDM)光环对重型过程的响应。先前的工作表明,光环响应主要是星系恒星质量和总病毒质量之间比率的函数,以及在其高度阈值中,气体有资格形成恒星,$ n [{\ rm cm cm}^{ - 3}] $。在低$ n $时,文献中的所有模拟都同意矮星旋ho偶性,但在高$ n \ ge 100 $时,尚无共识。我们在以前的一些模拟中报告了$ n \ ge 100 $的矮星系中的光环收缩,以至于空间分辨率不足。只要采用的星形构造阈值适合于模拟的分辨率,我们表明,对$ n \ ge 5 $的光晕响应非常稳定,最多是我们测试的最高星形构造阈值,$ n = 500 $。可以使用观察到的年轻恒星的聚类来校准此自由参数。阈值$ n \ le 1 $的模拟预测聚类太弱,而高星形阈值$ n \ ge 5 $的模拟与观察到的聚类一致。最后,我们测试了CDM预测,以针对附近矮星系的圆速度进行测试。低阈值可以预测速度太高,而$ n \ sim 10 $的模拟为观测值提供了很好的匹配。因此,我们得出的结论是,如果正确捕获了重子,CDM模型可以很好地描述KPC量表上星系的结构。

We use cosmological hydrodynamical galaxy formation simulations from the NIHAO project to investigate the response of cold dark matter (CDM) haloes to baryonic processes. Previous work has shown that the halo response is primarily a function of the ratio between galaxy stellar mass and total virial mass, and the density threshold above which gas is eligible to form stars, $n [{\rm cm}^{-3}]$. At low $n$ all simulations in the literature agree that dwarf galaxy haloes are cuspy, but at high $n\ge 100$ there is no consensus. We trace halo contraction in dwarf galaxies with $n\ge 100$ reported in some previous simulations to insufficient spatial resolution. Provided the adopted star formation threshold is appropriate for the resolution of the simulation, we show that the halo response is remarkably stable for $n\ge 5$, up to the highest star formation threshold that we test, $n=500$. This free parameter can be calibrated using the observed clustering of young stars. Simulations with low thresholds $n\le 1$ predict clustering that is too weak, while simulations with high star formation thresholds $n\ge 5$, are consistent with the observed clustering. Finally, we test the CDM predictions against the circular velocities of nearby dwarf galaxies. Low thresholds predict velocities that are too high, while simulations with $n\sim 10$ provide a good match to the observations. We thus conclude that the CDM model provides a good description of the structure of galaxies on kpc scales provided the effects of baryons are properly captured.

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