论文标题
核对逃脱分数和观察到的线条排放
Reconciling escape fractions and observed line emission in Lyman-continuum-leaking galaxies
论文作者
论文摘要
发现和阐明Lyman-Continuum(LYC)发射星系的特性是我们理解宇宙回离的重要步骤。尽管最近发现的Z -0.3-0.4 LYC发射器显示出强烈的光发射线,但尚未考虑到这些星系的电离光子和未构态星际介质(ISM)几何形状的逃脱,但尚未考虑到这些星系的几何形状的逃脱。因此,我们构建了观察到的LYC逃生的单区和两区光电离模型,我们将其与观察到的发射线测量值进行了比较。我们发现,单区密度结合的光电离模型无法再现LYC泄漏器的发射线,因为它们会系统地预测低电离电位的物种,如[OI]和[SII]。引入了一个两区模型,具有不同的电离参数和一个可变覆盖分数的可变模型,并且其中一个区域与密度结合在一起,我们表明观察到的LYC发射器的发射线比和逃逸分数得到了很好的复制。在某些LYC泄漏器中观察到的[OI]过量可以在此模型中自然解释,例如,通过低离子化和低填充因子气体发射。在[OI] 6300A和[SII] 6716,6731A中,LYC发射率很高(FESC> 38%)都缺乏。我们还确认[SII]缺乏症可用于选择LYC发射极候选物。最后,我们发现了可能二分法的指示,该二分法是在相对较低(FESC <10%)和较高逃生部分之间的LYC光子之间的逃生机制方面的指示。我们得出的结论是,两区光电离世模型足够,需要解释Z-0.3-0.4 LYC发射器的观察到的发射线特性。这些模型为使用光发射线及其比率作为LYC逃脱星系的定量诊断提供了第一步。
Finding and elucidating the properties of Lyman-continuum(LyC)-emitting galaxies is an important step for our understanding of cosmic reionization. Although the z - 0.3-0.4 LyC emitters found recently show strong optical emission lines, no consistent quantitative photoionization model taking into account the escape of ionizing photons and inhomogenous interstellar medium (ISM) geometry of these galaxies has yet been constructed. We hence construct one- and two-zone photoionization models accounting for the observed LyC escape, which we compare to the observed emission line measurements. We find that one-zone density-bounded photoionization models cannot reproduce the emission lines of the LyC leakers because they systematically underpredict the lines of species of low ionization potential, as [OI] and [SII]. Introducing a two-zone model, with differing ionization parameter and a variable covering fraction and where one of the zones is density-bounded, we show that the observed emission line ratios and escape fractions of the LyC emitters are well reproduced. The [OI] excess, which is observed in some LyC leakers, can be naturally explained in this model, e.g., by emission from low-ionization and low-filling-factor gas. LyC emitters with a high escape fraction (fesc > 38%) are deficient both in [OI]6300A and in [SII]6716,6731A. We also confirm that a [SII] deficiency can be used to select LyC emitter candidates. Finally, we find indications for a possible dichotomy in terms of escape mechanisms for LyC photons between galaxies with relatively low (fesc < 10%) and higher escape fractions. We conclude that two-zone photoionization models are sufficient and required to explain the observed emission line properties of z - 0.3-0.4 LyC emitters. These models provide a first step towards the use of optical emission lines and their ratios as quantitative diagnostics of LyC escape from galaxies.