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Lyman-α spectral properties of five newly discovered Lyman continuum emitters

机译:五个新发现的莱曼连续谱发射体的莱曼α光谱特性

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Aims. We have recently reported the discovery of five low redshift Lyman continuum (LyC) emitters (LCEs) with absolute escape fractions f _(esc) ~(LyC) that range from 6 to 13%, higher than previously found and that more than double the number of low redshift LCEs. We use these observations to test theoretical predictions about a link between the characteristics of the Lyman-alpha (Ly α ) line from galaxies and the escape of ionizing photons. Methods. We analyse the Ly α spectra of eight LCEs of the local Universe observed with the Cosmic Origins Spectrograph onboard the Hubble Space Telescope (our five leakers and three galaxies from the litterature), and compare their strengths and shapes to the theoretical criteria and comparison samples of local galaxies: the Lyman Alpha Reference Survey, Lyman-break analogs, Green Peas, and the high-redshift strong LyC leaker Ion2 . Results. Our LCEs are found to be strong Ly α emitters, with high equivalent widths, EW (Ly α ) & 70 ?, and large Ly α escape fractions, f _(esc) ~(Ly α ) & 20%. The Ly α profiles are all double-peaked with a small peak separation, in agreement with our theoretical expectations. They also have no underlying absorption at the Ly α position. All these characteristics are very different from the Ly α properties of typical star-forming galaxies of the local Universe. A subset of the comparison samples (2 ? 3 Green Pea galaxies) share these extreme values, indicating that they could also be leaking. We also find a strong correlation between the star formation rate surface density and the escape fraction of ionizing photons, indicating that the compactness of star-forming regions plays a role in shaping low column density paths in the interstellar medium of LCEs. Conclusions. The Ly α properties of LCEs are peculiar: Ly α can be used as a reliable tracer of LyC escape from galaxies, complementing other indirect diagnostics proposed in the literature.
机译:目的我们最近报道了五个低红移Lyman连续体(LyC)发射体(LCE)的发现,其绝对逃逸分数f _(esc)〜(LyC)范围为6%至13%,高于先前的发现,是低红移LCE的数量。我们使用这些观测值来测试关于来自星系的Lyman-alpha(Lyα)线的特性与电离光子逃逸之间的联系的理论预测。方法。我们分析了在哈勃太空望远镜上使用宇宙起源光谱仪观测到的八个宇宙的LCE的Lyα光谱(我们从文学界获得了五个泄漏星和三个星系),并将它们的强度和形状与理论标准和比较样本进行了比较本地星系:Lyman Alpha参考调查,Lyman断裂类似物,绿豌豆和高红移强LyC泄漏离子2。结果。发现我们的LCE是强Lyα发射体,具有高的等效宽度,EW(Lyα)&。 70Ω,而较大的Lyα逸出分数f _(esc)〜(Lyα)>。 20%。与我们的理论预期一致,Lyα谱图均为双峰峰,且峰间距较小。它们在Lyα位置也没有潜在的吸收。所有这些特征与当地宇宙典型星系星系的Lyα性质有很大不同。比较样本的一个子集(2到3个绿豌豆星系)具有这些极值,表明它们也可能正在泄漏。我们还发现恒星形成速率表面密度与电离光子的逸出率之间有很强的相关性,这表明恒星形成区的致密性在塑造LCE星际介质中的低列密度路径中起着作用。结论。 LCE的Lyα特性很独特:Lyα可以用作从星系逃逸LyC的可靠示踪剂,补充文献中提出的其他间接诊断方法。

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