论文标题

在恒星后E+A星系中流出的多相流出-II。中性和离子流出阶段之间的直接连接

Multi-phase outflows in post starburst E+A galaxies -- II. A direct connection between the neutral and ionized outflow phases

论文作者

Baron, Dalya, Netzer, Hagai, Davies, Ric I., Prochaska, J. Xavier

论文摘要

星星+A+A Galaxies是托管强大的Starburst的系统,突然被淬灭。模拟表明,这些系统提供了主要合并Ulirgs与红色和死亡椭圆形之间的缺失联系,在该椭圆形中,AGN反馈负责驱逐或破坏分子气体。但是,许多细节仍未解决,在这个短期阶段,对AGN驱动的风鲜为人知。我们介绍了SDSS的Muse/VLT在空间上分辨的IFU光谱验证J124754.95-033738.6,这是一个后的Starburst e+一个带有最近70个Myrs的星际的银河系,该星系在70 Myrs之前开始,并于30年前结束,并以$ \ sim 150 \ sim 150 \ yrm}的峰值结束了。我们在整个视野中都检测到了干扰的气体,这表明次要合并触发。我们检测到快速移动的多型气体云,嵌入在双锥面上的流出中,该流出由电离发射线和中性NAID \ emph {发射}和吸收线所追踪。我们发现了离子化和中性气相的运动学,空间范围和线的光度之间的显着相似性,并提出了一个模型,其中它们属于相同溢流的云中,这些模型均暴露于恒星和AGN辐射。我们的光离子模型提供了一致的电离线比,NAID吸收光学深度和EWS以及尘埃红色。使用该模型,我们首次估计中性气体质量比(约20),中性钠的部分和流出的云层的大小。这是AGN中中性和电离流出阶段之间有史以来最好的直接连接之一。

Post starburst E+A galaxies are systems that hosted a powerful starburst that was quenched abruptly. Simulations suggest that these systems provide the missing link between major merger ULIRGs and red and dead ellipticals, where AGN feedback is responsible for the expulsion or destruction of the molecular gas. However, many details remain unresolved and little is known about AGN-driven winds in this short-lived phase. We present spatially-resolved IFU spectroscopy with MUSE/VLT of SDSS J124754.95-033738.6, a post starburst E+A galaxy with a recent starburst that started 70 Myrs ago and ended 30 Myrs ago, with a peak SFR of $\sim 150\,\mathrm{M_{\odot}/yr}$. We detect disturbed gas throughout the entire field of view, suggesting triggering by a minor merger. We detect fast-moving multi-phased gas clouds, embedded in a double-cone face-on outflow, which are traced by ionized emission lines and neutral NaID \emph{emission} and absorption lines. We find remarkable similarities between the kinematics, spatial extents, and line luminosities of the ionized and neutral gas phases, and propose a model in which they are part of the same outflowing clouds, which are exposed to both stellar and AGN radiation. Our photoionization model provides consistent ionized line ratios, NaID absorption optical depths and EWs, and dust reddening. Using the model, we estimate, for the first time, the neutral-to-ionized gas mass ratio (about 20), the sodium neutral fraction, and the size of the outflowing clouds. This is one of the best ever observed direct connections between the neutral and ionized outflow phases in AGN.

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