TNG100中心和卫星星系中已分辨的恒星形成

IF 4.8 2区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS
Bryanne McDonough, Olivia Curtis, Tereasa G. Brainerd
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引用次数: 0

摘要

最近的宇宙学流体动力学模拟已经产生了一些数值星系群,它们的全局恒星形成特性与观测到的星系很好地吻合。对超新星和活动星系核的能量反馈进行适当的建模对于模拟再现观测到的星系特性的能力至关重要,而且从历史上看,这种建模已被证明是一项挑战。在这里,我们分析了TNG100模拟的z = 0快照中中心和卫星星系的局部特性,作为反馈模型的测试。我们生成了TNG100星系中恒星粒子的正面投影,从中我们证明了恒星形成主序列(Σ SFR -Σ *关系)的存在,其斜率和归一化与先前的研究基本一致。我们还给出了不同星系群的两个参数的径向剖面图:与已分辨的主序线的距离(ΔΣ SFR)和光度加权恒星年龄(年龄L)。我们发现,平均而言,大质量的中心星系和卫星星系是从内到外熄灭的,而低质量的中心星系和卫星星系有着相似的、平坦的轮廓。总的来说,我们发现,除了星暴种群外,TNG100反馈模型得到的模拟星系的年龄L和ΔΣ SFR的径向分布与观测星系的径向分布一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Resolved Star Formation in TNG100 Central and Satellite Galaxies
Abstract Recent cosmological hydrodynamical simulations have produced populations of numerical galaxies whose global star-forming properties are in good agreement with those of observed galaxies. Proper modeling of energetic feedback from supernovae and active galactic nuclei is critical to the ability of simulations to reproduce observed galaxy properties, and historically, such modeling has proven to be a challenge. Here, we analyze the local properties of central and satellite galaxies in the z = 0 snapshot of the TNG100 simulation as a test of feedback models. We generate a face-on projection of stellar particles in TNG100 galaxies, from which we demonstrate the existence of a resolved star-forming main sequence (Σ SFR –Σ * relation) with a slope and normalization that is in reasonable agreement with previous studies. We also present radial profiles of various galaxy populations for two parameters: the distance from the resolved main-sequence line (ΔΣ SFR ) and the luminosity-weighted stellar age (Age L ). We find that, on average, high-mass central and satellite galaxies quench from the inside out, while low-mass central and satellite galaxies have similar, flatter profiles. Overall, we find that, with the exception of the starburst population, the TNG100 feedback models yield simulated galaxies whose radial distributions of Age L and ΔΣ SFR agree with those of observed galaxies.
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来源期刊
Astrophysical Journal
Astrophysical Journal 地学天文-天文与天体物理
CiteScore
8.40
自引率
30.60%
发文量
2854
审稿时长
1 months
期刊介绍: The Astrophysical Journal is the foremost research journal in the world devoted to recent developments, discoveries, and theories in astronomy and astrophysics.
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