论文标题

凯克·莱曼(Keck Lyman)连续体光谱调查中Z〜3处电离辐射的逃逸和星系性能之间的联系

The connection between the escape of ionizing radiation and galaxy properties at z~3 in the Keck Lyman Continuum Spectroscopic Survey

论文作者

Pahl, Anthony J., Shapley, Alice, Steidel, Charles C., Reddy, Naveen A., Chen, Yuguang, Rudie, Gwen C., Strom, Allison L.

论文摘要

电离辐射($ f_ {ESC} $)的逃逸分数与星系属性(例如恒星质量(M*),年龄,恒星形成率(SFR)和灰尘含量)的属性是恢复模型的关键输入,但是在高送货时仍未测试过许多这些关系。我们介绍了来自Keck Lyman Continuum Spectroscocic调查(KLCS)的96 Z〜3星系样品的分析。这些星系既具有敏感的Keck/LRIS光谱测量值,也具有Lyman Continuum(LYC)区域的敏感性测量值,也具有对恒星种群参数的约束的多波段光度法。我们从分类的子样本中构造复合光谱,这是星系特性的函数,并量化了每个复合材料的电离 - 光子逃逸。我们发现$ f_ {esc} $和m*之间存在明显的反相关,这与宇宙缩放模拟的预测一致。我们还发现$ f_ {esc} $和e(b-v)之间的重要反相关,编码了我们样本中LYC逃生的基本物理。我们还发现$ f_ {ESC} $与恒星年龄或特定的SFR(= SFR/M*)之间没有显着相关性,这具有挑战性的解释,可以同步近期的星形形成和有利的条件,以使电离逃脱。 KLCS中与$ f_ {esc} $相关的星系属性是Ly $α$等效的宽度,UV光度,M*,SFR和E(B-V),但不是年龄或SSFR。迄今为止,这是对高红移的星系特性和LYC逃生的最全面的分析,将用于指导未来的模型和电离时期的观察结果。

The connection between the escape fraction of ionizing radiation ($f_{esc}$) and the properties of galaxies, such as stellar mass (M*), age, star-formation rate (SFR), and dust content, are key inputs for reionization models, but many of these relationships remain untested at high redshift. We present an analysis of a sample of 96 z~3 galaxies from the Keck Lyman Continuum Spectroscopic Survey (KLCS). These galaxies have both sensitive Keck/LRIS spectroscopic measurements of the Lyman continuum (LyC) region, and multi-band photometry that places constraints on stellar population parameters. We construct composite spectra from subsamples binned as a function of galaxy property and quantify the ionizing-photon escape for each composite. We find a significant anti-correlation between $f_{esc}$ and M*, consistent with predictions from cosmological zoom-in simulations. We also find significant anti-correlation between $f_{esc}$ and E(B-V), encoding the underlying physics of LyC escape in our sample. We also find no significant correlation between $f_{esc}$ and either stellar age or specific SFR (=SFR/M*), challenging interpretations that synchronize recent star formation and favorable conditions for ionizing escape. The galaxy properties now shown to correlate with $f_{esc}$ in the KLCS are Ly$α$ equivalent width, UV Luminosity, M*, SFR, and E(B-V), but not age or sSFR. To date, this is the most comprehensive analysis of galaxy properties and LyC escape at high redshift, and will be used to guide future models and observations of the reionization epoch.

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