论文标题

水母星系中,高分子气体含量以及中性气的有效转化为分子气

The high molecular gas content, and the efficient conversion of neutral into molecular gas, in jellyfish galaxies

论文作者

Moretti, A., Paladino, R., Poggianti, B. M., Serra, P., Ramatsoku, M., Franchetto, A., Deb, T., Gullieuszik, M., Tomicic, N., Mingozzi, M., Vulcani, B., Radovich, M., Bettoni, D., Fritz, J.

论文摘要

在RedShift $ \ sim 0.05 $的GASP样品中的四个水母星系的磁盘中,我们系统地检测到分子气体质量高于田间星系。这些星系通过簇内介质的RAM压力剥离了其气体,并且通常相对于类似恒星质量的非分裂星系以高速形成恒星。我们发现,除非磁盘中的巨大分子云因RAM压力而不受限制,从而导致异常高 - $ \ rm h_2 $转化因子,这些星系的分子气体含量比相似质量的正常星系高4-5倍,分子气体耗尽时间范围从$ \ sim $ \ sim $ \ sim $ 1到9 gyr,通常是相对低的凝结,相应地刻有相对的凝聚。磁盘中的分子气体质量是中性气体的4至$ \ sim $ 100倍的因素,而不是含有类似量的分子和中性气体的正常螺旋盘。有趣的是,分子加中性的气体总量与类似恒星质量的正常螺旋星系相似。这些结果强烈表明,在水母阶段,星系磁盘的RAM压力导致HI非常有效地转换为$ \ rm H_2 $。

In the disks of four jellyfish galaxies from the GASP sample at redshift $\sim 0.05$ we detect molecular gas masses systematically higher than in field galaxies. These galaxies are being stripped of their gas by ram pressure from the intra cluster medium and are, in general, forming stars at high rate with respect to non-stripped galaxies of similar stellar masses. We find that, unless giant molecular clouds in the disk are unbound by ram pressure leading to exceptionally high CO--to--$\rm H_2$ conversion factors, these galaxies have a molecular gas content 4-5 times higher than normal galaxies of similar masses, and molecular gas depletion times ranging from $\sim$1 to 9 Gyr, corresponding to generally very low star formation efficiencies. The molecular gas mass within the disk is a factor between 4 and $\sim$100 times higher than the neutral gas mass, as opposed to the disks of normal spirals that contain similar amounts of molecular and neutral gas. Intriguingly, the molecular plus neutral total amount of gas is similar to that in normal spiral galaxies of similar stellar mass. These results strongly suggest that ram pressure in disks of galaxies during the jellyfish phase leads to a very efficient conversion of HI into $\rm H_2$.

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