论文标题

银河流出与电离光子的逃生之间的联系

The connection between galactic outflows and the escape of ionizing photons

论文作者

Mainali, Ramesh, Rigby, Jane R., Chisholm, John, Bayliss, Matthew, Bordoloi, Rongmon, Gladders, Michael D., Rivera-Thorsen, T. Emil, Dahle, Håkon, Sharon, Keren, Florian, Michael, Berg, Danielle A., Sharma, Soniya, Owens, M. Riley, Kjellgren, Karin, Kim, Keunho J., Wayne, Julia

论文摘要

我们分析了一个重力镜头星系的光谱,称为Sunburst Arc,该光谱正在泄漏电离光子,也称为Lyman Continuum(Lyc)。重力镜头的放大倍率使星系可以空间分辨到一个泄漏电离光子的区域,而几个没有。来自麦哲伦的紫外线紫外线和光谱沿着镜头弧线的十个不同区域,包括LYC泄漏区域的六个多个图像,以及四个未显示LYC发射的区域。电离光子发射区域的休息帧光谱显示蓝色($ΔV$ = 27 km s $^{ - 1} $)宽发射组件(FWHM = 327 km S $^{ - 1} $)构成了总计55%的总构成[OIII]的范围,以及狭窄的组成部分(F) S $^{ - 1} $),表明存在强大的高度离子气体流出。这与从其余框架紫外光谱推断出的高速离子流出流出相一致。相比之下,在非肠道区域中,广泛的排放组件不那么突出,其中包括$ \ sim $ \ sim $ 26%的总[OIII]线路通量。在泄漏器和非致密者中,高电离吸收线都很突出,但是泄漏器中低电离吸收线非常弱,这表明在泄漏器中,视线线高度电离。对恒星风特征的分析表明,LYC泄漏区域的恒星种群比非肠道区域($ \ sim $ \ sim $ 12 Myr)要年轻($ \ sim $ 3 MYR),这突显了年轻恒星的出色反馈在电离光子逃生中起着重要的作用。

We analyze spectra of a gravitationally lensed galaxy, known as the Sunburst Arc, that is leaking ionizing photons, also known as the Lyman continuum (LyC). Magnification from gravitational lensing permits the galaxy to be spatially resolved into one region that leaks ionizing photons, and several that do not. Rest-frame ultraviolet and optical spectra from Magellan target ten different regions along the lensed Arc, including six multiple images of the LyC leaking region, as well as four regions that do not show LyC emission. The rest-frame optical spectra of the ionizing photon emitting regions reveal a blue-shifted ($ΔV$=27 km s$^{-1}$) broad emission component (FWHM=327 km s$^{-1}$) comprising 55% of the total [OIII] line flux, in addition to a narrow component (FWHM = 112 km s$^{-1}$), suggesting the presence of strong highly ionized gas outflows. This is consistent with the high-velocity ionized outflow inferred from the rest-frame UV spectra. In contrast, the broad emission component is less prominent in the non-leaking regions, comprising $\sim$26% of total [OIII] line flux. The high ionization absorption lines are prominent in both leaker and non-leaker but low ionization absorption lines are very weak in the leaker, suggesting that the line of sight gas is highly ionized in the leaker. Analyses of stellar wind features reveal that the stellar population of the LyC leaking regions is considerably younger ($\sim$3 Myr) than the non-leaking regions ($\sim$12 Myr), highlighting that stellar feedback from young stars may play an important role in ionizing photon escape.

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