论文标题
陷入该行为:内银河系中的金属丰富的高速云
Caught in the Act: A Metal-Rich High-Velocity Cloud in the Inner Galaxy
论文作者
论文摘要
我们表征了内部银河系中流出的高速云中的化学和物理条件。我们报告高速云的超极金属度为[O/H] = $+0.36 \ pm0.12 $,$ v_ \ m athrm {lsr} $ = 125.6 km s $ s $^{ - 1} $ to th th th th th th th th th hd hd hd hd hd 156359($ l $ = 328。 $ - $ 14。$^{\ circ} $ 5,$ d $ = 9 kpc,$ z $ = $ - $ 2.3 kpc)。使用FUSE,HST性传播感染和ESO Feros的档案观测,我们测量了H I,O I,C II,C II,N II,SI II,Ca II,Ca II,Si III,Fe III,Fe III,Fe III,C IV,SI IV,SI IV,N V和O VI中的高速吸收。我们测量了log $ n $(h i)的低H I列密度= $ 15.54 \ pm0.05 $在HVC中从保险丝数据中的多个不饱和H I LYMAN系列线中的HVC中的hvc中的hvc中的pm0.05 $。我们从硅,铁和钙吸收相对于氧的相对强度确定了HVC的低尘埃耗竭水平,[si/o] = $ -0.33 \ pm0.14 $,[fe/o] = $ -0.30 \ pm0.20 \ pm0.20 $,and [ca/o] = $ -0.56 = $ - 0.56 \ pm0.16 \ pm0.16 $ pp pm0.16 $。使用碰撞电离模型对高离子吸收进行分析表明,热等离子体是多相的,C IV和SI IV追踪10 $^{4.9} $ K GAS和N V和N V和O VI和O VI tracing 10 $^{5.4} $ k气体。云的金属性,灰尘含量,运动学和与磁盘的紧密距离都与银河风的起源一致。当HD 156359的视线探测内部星系时,HVC似乎是一种年轻的云,被夹住在多相银河流出并将其驱动到光环中的行为中。
We characterize the chemical and physical conditions in an outflowing high-velocity cloud in the inner Galaxy. We report a super-solar metallicity of [O/H] = $+0.36\pm0.12$ for the high-velocity cloud at $v_\mathrm{LSR}$ = 125.6 km s$^{-1}$ toward the star HD 156359 ($l$ = 328.$^{\circ}$7, $b$ = $-$14.$^{\circ}$5, $d$ = 9 kpc, $z$ = $-$2.3 kpc). Using archival observations from FUSE, HST STIS, and ESO FEROS we measure high-velocity absorption in H I, O I, C II, N II, Si II, Ca II, Si III, Fe III, C IV, Si IV, N V, and O VI. We measure a low H I column density of log $N$(H I) = $15.54\pm0.05$ in the HVC from multiple unsaturated H I Lyman series lines in the FUSE data. We determine a low dust depletion level in the HVC from the relative strength of silicon, iron, and calcium absorption relative to oxygen, with [Si/O]=$-0.33\pm0.14$, [Fe/O]=$-0.30\pm0.20$, and [Ca/O] =$-0.56\pm0.16$. Analysis of the high-ion absorption using collisional ionization models indicates that the hot plasma is multi-phase, with the C IV and Si IV tracing 10$^{4.9}$ K gas and N V and O VI tracing 10$^{5.4}$ K gas. The cloud's metallicity, dust content, kinematics, and close proximity to the disk are all consistent with a Galactic wind origin. As the HD 156359 line of sight probes the inner Galaxy, the HVC appears to be a young cloud caught in the act of being entrained in a multi-phase Galactic outflow and driven out into the halo.