论文标题

红色骑在引擎盖上:探索星系颜色如何取决于环境

Red riding on hood: Exploring how galaxy colour depends on environment

论文作者

Bhambhani, Pankaj C., Baldry, Ivan. K., Brough, Sarah, Hill, Alexander D., Lara-Lopez, M. A., Loveday, J., Holwerda, B. W.

论文摘要

已知星系群体表现出强烈的双峰性,对应于蓝色的恒星形成和红色静态亚群。发现这两个种群的相对丰度随着恒星质量和环境而变化。在本文中,我们探讨了考虑不同类型测量的环境的效果。我们从Galaxy and Massbly调查中选择了$ 49,911 $星系的$ 49,911美元的星系。我们研究了红星系对当地环境的不同度量的依赖性以及周围宇宙网络中密度梯度定义的大规模“几何”环境。我们发现,红色星系级数随固定恒星质量处的环境而变化。与大规模的几何环境度量相比,红色部分更大程度地取决于局部环境措施。通过比较不同的环境密度,我们表明没有密度测量完全解释了观察到的环境红分变化,这表明环境密度的不同测量值包含不同的信息。我们测试当地的环境度量是否可以合并在一起,可以解释所有观察到的环境红分变化。几何环境具有小的残留效应,并且对于空隙的影响比任何其他类型的几何环境都更大。这可以对应用于宇宙规模的星系演化模拟的物理学进行测试,因为它结合了大规模影响与局部环境影响。

Galaxy populations are known to exhibit a strong colour bimodality, corresponding to blue star-forming and red quiescent subpopulations. The relative abundance of the two populations has been found to vary with stellar mass and environment. In this paper, we explore the effect of environment considering different types of measurements. We choose a sample of $49, 911$ galaxies with $0.05 < z < 0.18$ from the Galaxy And Mass Assembly survey. We study the dependence of the fraction of red galaxies on different measures of the local environment as well as the large-scale "geometric" environment defined by density gradients in the surround- ing cosmic web. We find that the red galaxy fraction varies with the environment at fixed stellar mass. The red fraction depends more strongly on local environmental measures than on large-scale geometric environment measures. By comparing the different environmental densities, we show that no density measurement fully explains the observed environmental red fraction variation, suggesting the different measures of environmental density contain different information. We test whether the local environmental measures, when combined together, can explain all the observed environmental red fraction variation. The geometric environment has a small residual effect, and this effect is larger for voids than any other type of geometric environment. This could provide a test of the physics applied to cosmological-scale galaxy evolution simulations as it combines large-scale effects with local environmental impact.

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