论文标题

在2.0 <z <2.5处,星系性能对基础3D物质密度字段的依赖性

The Dependence of Galaxy Properties on the Underlying 3D Matter Density Field at 2.0 < z < 2.5

论文作者

Momose, Rieko, Lee, Khee-Gan, Horowitz, Benjamin, Ata, Metin, Kartaltepe, Jeyhan S.

论文摘要

我们首次在$ z = 2-2.5 $时首次研究星系演化作为基础3D暗物质密度的函数,其中通过动态前向建模技术从观察到的星系中重建了基础物质密度。利用这张地图,我们研究了恒星形成活动和星系类型(合并,亚毫米星系,活跃的银河系核和静态星系)的依赖性,对物质过度密度$δ_\ text {local} $ and stellar Mass。除了过度,我们首次能够探测不足的区域($δ_\ text {local} <1 $)。我们发现恒星形成活动通常取决于恒星质量,而不是物质密度。我们还发现证据表明:(1)在高密度区域中没有合并和亚毫米星系,但否则在低密度箱中没有趋势,(2)(2)主动银河系核和静态星系流行率的增加,因为物质密度的函数,以及(3)(3)所有与Stellar质量的上述类别的增加。这些结果表明,恒星质量是宇宙中午星系进化的主要驱动力。我们的新方法直接使用重建的暗物质密度图直接证明了在较高红移时星系进化中环境效应研究的新能力。

We study the environmental effect of galaxy evolution as a function of the underlying 3D dark matter density for the first time at $z=2-2.5$, in which the underlying matter density is reconstructed from observed galaxies through dynamical forward modeling techniques. Utilizing this map, we investigate the dependence of the star formation activities and galaxy types (mergers, submillimeter galaxies, active galactic nuclei, and quiescent galaxies) on the matter overdensity $Δ_\text{local}$ and stellar mass. For the first time, we are able to probe underdense regions ($Δ_\text{local}<1$) in addition to overdensities. We find that star formation activity generally depends on the stellar mass, not the matter density. We also find evidence that: (1) an absence of mergers and submillimeter galaxies in higher-density regions but otherwise no trend across lower-density bins, (2) the increase of active galactic nuclei and quiescent galaxy prevalence as a function of matter density, and (3) the increase of all aforementioned categories with the stellar mass. These results indicate that stellar mass is the main driver of galaxy evolution at the cosmic noon. Our novel approach directly using reconstructed dark matter density maps demonstrates the new capability of the environmental effect studies in galaxy evolution at higher redshift.

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