论文标题
漫画后的分子气体观察结果揭示了过去的动荡
Resolved Molecular Gas Observations of MaNGA Post-starbursts Reveal a Tumultuous Past
论文作者
论文摘要
恒星后星系(PSB)最近并迅速淬灭了恒星形成,因此它们是了解星系如何从恒星形成的晚期型到静止的早期型的重要方法。最近发现,PSB中大型冷气储藏室的发现质疑了星系必须失去气体才能变得静止的理论。光学整体场光谱(IFS)调查显示了两类PSB:中央淬火区域和环形PSB的中央PSB,其郊区的淬火。我们分析了附近的13个(z <0.1)PSB的样品,该样本在Apache Point天文台(漫画)调查的附近星系中的空间分辨光学IFS数据和匹配的分辨率Atacama Atacama大(亚)毫米阵列(Alma)观测值$^{12} $ CO(1-0)。在我们7/13的PSB和中心浓缩的分子气体中,受干扰的恒星运动学与我们大多数样品的最新合并一致。在没有合并证据的星系中,替代过程可能会向内漏气并抑制恒星形成,这可能包括流出,恒星棒,次要合并或相互作用。八分之一的星系后,恒星后区域的星形形成效率被抑制,而气体部分与星形星系一致。 AGN的反馈可能会驱动这种稳定,我们观察到5/13星系中心的AGN一致发射。最后,我们的中央和环PSB具有相似的特性,除了中央PSB中的离子化和分子气体更加干扰。总体而言,我们的PSB中的分子气体倾向于紧凑且高度干扰,导致浓缩气体储存库无法有效形成恒星。
Post-starburst galaxies (PSBs) have recently and rapidly quenched their star-formation, thus they are an important way to understand how galaxies transition from star-forming late-types to quiescent early-types. The recent discovery of large cold gas reservoirs in PSBs calls into question the theory that galaxies must lose their gas to become quiescent. Optical Integral Field Spectroscopy (IFS) surveys have revealed two classes of PSBs: central PSBs with central quenching regions and ring PSBs with quenching in their outskirts. We analyze a sample of 13 nearby (z < 0.1) PSBs with spatially resolved optical IFS data from the Mapping Nearby Galaxies at Apache Point Observatory (MaNGA) survey and matched resolution Atacama Large (sub-)Millimeter Array (ALMA) observations of $^{12}$CO(1-0). Disturbed stellar kinematics in 7/13 of our PSBs and centrally concentrated molecular gas is consistent with a recent merger for most of our sample. In galaxies without merger evidence, alternate processes may funnel gas inwards and suppress star-formation, which may include outflows, stellar bars, and minor mergers or interactions. The star-formation efficiencies of the post-starburst regions in nearly half our galaxies are suppressed while the gas fractions are consistent with star-forming galaxies. AGN feedback may drive this stabilization, and we observe AGN-consistent emission in the centers of 5/13 galaxies. Finally, our central and ring PSBs have similar properties except the ionized and molecular gas in central PSBs is more disturbed. Overall, the molecular gas in our PSBs tends to be compact and highly disturbed, resulting in concentrated gas reservoirs unable to form stars efficiently.