论文标题

紫外线吸收线及其追踪Lyman Continuum逃生部分的潜力

UV absorption lines and their potential for tracing the Lyman continuum escape fraction

论文作者

Mauerhofer, V., Verhamme, A., Blaizot, J., Garel, T., Kimm, T., Michel-Dansac, L., Rosdahl, J.

论文摘要

红移6上方的中性层间介质对电离辐射不透明,因此需要间接测量该时代星系的电离光子的逃生分数。低电离状态吸收线是星系谱中的一个共同特征,显示出多种强度和形状。由于这些线表明在恒星前面存在中性气体,因此已提议它们携带有关从星系中电离辐射逃脱的信息。我们研究了哪些过程负责吸收线的形状,以更好地了解其起源。然后,我们探索是否可以使用吸收系来预测逃生部分。从许多观察方向上可以看出,使用辐射流动力学缩放模拟和辐射传输代码RASCAS RASCAS,在Redshift 3处生成模拟CII 1334和虚拟星系的LYB线。我们还计算在这些方向上电离光子的逃生部分,并寻找线与逃生部分之间的相关性。我们发现所产生的模拟吸收线与观测相媲美,而线和逃生部分因观察方向而异。气速度和灰尘总是显着影响吸收曲线。我们发现可观察到的LYB或CII 1334与逃生部分之间没有很强的相关性。在纠正灰尘衰减以恢复固有连续体的连续体后,CII 1334的残留通量与逃生分数良好相关,方向上有灰尘校正的残余通量大于30%。对于其他方向,这种关系具有很强的分散体,并且在大多数情况下,残余通量高估了逃生部分。关于LYB,灰尘校正后的残留通量与逃生部分无关,但可以用作下限。 (简略)

The neutral intergalactic medium above redshift 6 is opaque to ionizing radiation, therefore one needs indirect measurements of the escape fraction of ionizing photons from galaxies of this epoch. Low-ionization state absorption lines are a common feature in the spectrum of galaxies, showing a diversity of strengths and shapes. Since these lines indicate the presence of neutral gas in front of the stars, they have been proposed to carry information on the escape of ionizing radiation from galaxies. We study which processes are responsible for the shape of the absorption lines, to better understand their origin. We then explore whether the absorption lines can be used to predict the escape fractions. Using a radiation-hydrodynamical zoom-in simulation and the radiative transfer code RASCAS, we generate mock CII 1334 and LyB lines of a virtual galaxy at redshift 3 as seen from many directions of observation. We also compute the escape fraction of ionizing photons in those directions and look for correlations between the lines and the escape fractions. We find that the resulting mock absorption lines are comparable to observations and that the lines and the escape fractions vary strongly depending on the direction of observation. Gas velocity and dust always affect the absorption profile significantly. We find no strong correlations between observable LyB or CII 1334 and the escape fraction. After correcting the continuum for attenuation by dust to recover the intrinsic continuum, the residual flux of CII 1334 correlates well with the escape fraction for directions with a dust corrected residual flux larger than 30%. For other directions, the relations have a strong dispersion, and the residual flux overestimates the escape fraction for most cases. Concerning LyB, the residual flux after dust correction does not correlate with the escape fraction but can be used as a lower limit. (abridged)

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