论文标题

部分可观测时空混沌系统的无模型预测

MaNGA 8313-1901: gas accretion observed in a blue compact dwarf galaxy?

论文作者

Ju, Mengting, Yin, Jun, Liu, Rongrong, Hao, Lei, Shao, Zhengyi, Feng, Shuai, Riffel, Rogério, Liu, Chenxu, Stark, David V., Shen, Shiyin, Telles, Eduardo, Fernández-Trincado, José G., Wang, Junfeng, Xu, Haiguang, Bizyaev, Dmitry, Rong, Yu

论文摘要

气体积聚是星系发展中的重要过程,但直接观察证据有限。在本文中,我们报告了在蓝色紧凑型矮人(BCD)Galaxy,漫画8313-1901中检测到可能正在进行的气体积聚事件,这是由附近的星系和Apache Point Point Vistatoration(Manga)计划观察到的。该星系对东北(Ne Clump)具有独特的不中心蓝色团块,显示出低金属性和增强的恒星形成。 NE团块中气体的运动学似乎也与宿主BCD银河系分离。加上NE团块的金属滴度,它表明NE团块可能具有外部起源,例如气体积聚或星系相互作用,而不是内部来源,例如磁盘中的\ hii〜复合物。在删除了基本的主机组件后,我们发现“纯”团块的光谱与含有恒星恒星($ \ le 7 $ MYR)的建模频谱非常匹配。这可能意味着银河系正在经历冷气积聚,而不是涉及具有重要既往旧星星的星系的合并事件。我们还发现了主机银河西南角的另一个团块(SW团块)的迹象,两个团块可能具有相同的燃气积聚起源。

Gas accretion is an important process in the evolution of galaxies, but it has limited direct observational evidences. In this paper, we report the detection of a possible ongoing gas accretion event in a Blue Compact Dwarf (BCD) galaxy, MaNGA 8313-1901, observed by the Mapping Nearby Galaxies and Apache Point Observatory (MaNGA) program. This galaxy has a distinct off-centered blue clump to the northeast (the NE clump) that shows low metallicity and enhanced star-formation. The kinematics of the gas in the NE clump also seems to be detached from the host BCD galaxy. Together with the metallicity drop of the NE clump, it suggests that the NE clump likely has an external origin, such as the gas accretion or galaxy interaction, rather than an internal origin, such as an \hii~complex in the disk. After removing the underlying host component, we find that the spectrum of the "pure" clump can match very well with a modeled spectrum containing a stellar population of the young stars ($\le 7$ Myr) only. This may imply that the galaxy is experiencing an accretion of cold gas, instead of a merger event involving galaxies with significant pre-existing old stars. We also find signs of another clump (the SW clump) at the south-west corner of the host galaxy, and the two clumps may share the same origin of gas accretion.

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