论文标题
对银河多样性问题的解决方案的批判性评估
A Critical Assessment of Solutions to the Galaxy Diversity Problem
论文作者
论文摘要
银河旋转曲线表现出各种内部斜率。观察数据表明,解释这种多样性可能需要一种将星系表面亮度与其暗物质光环的中心区域相关的机制。在这项工作中,我们比较了几种具体模型,这些模型捕获了解释星系多样性问题所需的相关物理学。我们专门关注具有等温核心和两个冷暗物质(CDM)模型的自我相互作用的暗物质(SIDM)模型,具有/不使用重男性反馈。与CDM情况相反,SIDM模型可以导致光环中的等温核心形成,并且对Baryonic反馈过程不敏感,后者对较长的时间尺度作用。使用来自Spitzer光度法和准确旋转曲线(SPARC)目录中90个星系的旋转曲线,我们进行了全面的模型比较,该模型比较解决了先前工作的统计方法问题。我们恢复的最佳拟合光环模型与标准的CDM浓度量和丰度匹配关系一致。我们发现,SIDM和受反馈影响的CDM模型都比CDM模型更好,没有反馈在解释样品中低表面亮度星系的旋转曲线。但是,相比,对SIDM或受反馈影响的CDM模型作为SPARC目录中星系多样性的来源,没有强烈的统计偏好。
Galactic rotation curves exhibit a diverse range of inner slopes. Observational data indicates that explaining this diversity may require a mechanism that correlates a galaxy's surface brightness with the central-most region of its dark matter halo. In this work, we compare several concrete models that capture the relevant physics required to explain the galaxy diversity problem. We focus specifically on a Self-Interacting Dark Matter (SIDM) model with an isothermal core and two Cold Dark Matter (CDM) models with/without baryonic feedback. In contrast to the CDM case, the SIDM model can lead to the formation of an isothermal core in the halo, and is also mostly insensitive to baryonic feedback processes, which act on longer time-scales. Using rotation curves from 90 galaxies in the Spitzer Photometry and Accurate Rotation Curves (SPARC) catalog, we perform a comprehensive model comparison that addresses issues of statistical methodology from prior works. The best-fit halo models that we recover are consistent with standard CDM concentration-mass and abundance matching relations. We find that both the SIDM and feedback-affected CDM models are better than a CDM model with no feedback in explaining the rotation curves of low and high surface brightness galaxies in the sample. However, when compared to each other, there is no strong statistical preference for either the SIDM or the feedback-affected CDM halo model as the source of galaxy diversity in the SPARC catalog.