论文标题

漫画中的凉爽流出:系统的研究和与温暖阶段的比较

Cool outflows in MaNGA: a systematic study and comparison to the warm phase

论文作者

Avery, Charlotte, Wuyts, Stijn, Schreiber, Natascha M. Förster, Villforth, Carolin, Bertemes, Caroline, Hamer, Stephen L., Sharma, Raman, Toshikawa, Jun, Zhang, Junkai

论文摘要

本文通过NA I D $λλ5890,5895$Å的特征调查了银河风的中性气相。我们找到了127个星系中中性流出的证据($ \ sim 5 $占分析线发射样品的百分比)。在具有更尘埃的中央区域的星系中优先看到了风,并且在SFR表面密度升高的系统中,这两个风阶段更常见,尤其是在根据SFR $ _ {5myr} $/sfr $ _ {800myr} $ parameter的SFR $ _ {5myr} $ _ {5myr} $ _ {5myr} $ _ {5myr} $ _ {5myr} $ _ {800myr} $ parameter的升高时。我们发现电离流动运动学与我们在中性相中测量的相一致。这表明,尽管它们对总流出质量预算做出了较小的贡献,但收集电离风阶段的经验测量值仍有价值,以提供有关流出中批量运动的信息。根据用于电离气体诊断的灰尘校正,中性相具有$ \ sim 1.2-1.8 $ dex更高的质量流出速率($ \ dot {m} _ {out} $),与离子化阶段相比。我们量化了$ \ dot {m} _ {out} $与物理风驱动器的优势(sfr,$ l_ {agn} $)之间的比例关系。使用径向 - 齐路的堆叠方法,并考虑倾斜度依赖性,我们发现结果与磁盘平面正交的两种外交相一致。我们的工作补充了文献中的其他多相流出研究,这些研究考虑了较小的样本,更极端的对象,或通过堆叠较大的样本进行进行。

This paper investigates the neutral gas phase of galactic winds via the Na I D$λλ5890,5895$Å feature within $z \sim 0.04$ MaNGA galaxies, and directly compares their incidence and strength to the ionized winds detected within the same parent sample. We find evidence for neutral outflows in 127 galaxies ($\sim 5$ per cent of the analysed line-emitting sample). Na I D winds are preferentially seen in galaxies with dustier central regions and both wind phases are more often found in systems with elevated SFR surface densities, especially when there has been a recent upturn in the star formation activity according to the SFR$_{5Myr}$/SFR$_{800Myr}$ parameter. We find the ionized outflow kinematics to be in line with what we measure in the neutral phase. This demonstrates that, despite their small contributions to the total outflow mass budget, there is value to collecting empirical measurements of the ionized wind phase to provide information on the bulk motion in the outflow. Depending on dust corrections applied to the ionized gas diagnostics, the neutral phase has $\sim 1.2 - 1.8$ dex higher mass outflow rates ($\dot{M}_{out}$), on average, compared to the ionized phase. We quantify scaling relations between $\dot{M}_{out}$ and the strengths of the physical wind drivers (SFR, $L_{AGN}$). Using a radial-azimuthal stacking method, and by considering inclination dependencies, we find results consistent with biconical outflows orthogonal to the disk plane. Our work complements other multi-phase outflow studies in the literature which consider smaller samples, more extreme objects, or proceed via stacking of larger samples.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源