论文标题

吉祥物:分子气体耗尽时间和金属性梯度 - 淬灭活性星系反馈的证据

MASCOT: Molecular gas depletion times and metallicity gradients -- evidence for feedback in quenching active galaxies

论文作者

Bertemes, C., Wylezalek, D., Albán, M., Aravena, M., Baker, W. M., Cazzoli, S., Cicone, C., Martín, S., Schimek, A., Wagg, J., Wang, W.

论文摘要

我们提出了CO目标漫画 - ARO调查(Mascot)的首次公共数据发布的结果,该研究重点是我们的研究,其星系的恒星形成率和出色的群众将它们置于恒星形成主要序列的山脊下。在光学选择的2型AGN/衬里/复合材料中,我们发现气相金属性梯度$ \ nabla Z $与全球分子气体耗尽时间$ t_ \ mathrm {dep} = m_ {h_2} $ sfr之间的经验关系。我们的结果基于O3N2金属性诊断(应用于给定星系中的星形区域),最近建议通过弥漫性电离气体(DIG)和低离世核发射区域(衬里)也具有鲁棒性。我们对观察到的$ \ nabla z $ - $ t_ \ mathrm {dep} $关系的可能驱动因素进行系统调查(OUFLOWS,AS ACERAGERION,AC ACERTION,INUS ITU Star组形成,合并和形态学)。我们发现$ \ nabla z $或$ t_ \ mathrm {dep} $与[oiii]速度扩展所追踪的集中流出强度之间存在牢固的关系。我们还发现,在耗尽时间较长的AGN状星系中,郊区抑制恒星形成的特征,外部区域中金属的增强。我们没有发现影响金属性梯度的流入的证据,我们的结果均未受到合并活动或形态的显着影响。因此,我们得出的结论是,观察到的$ \ nabla z $ - $ t_ \ mathrm {dep} $关系可能源于通过弱反馈通过金属重新分配的组合,以及通过解决的质量 - 金属质量-SFR关系与静脉星形成的联系。

We present results from the first public data release of the MaNGA-ARO Survey of CO Targets (MASCOT), focussing our study on galaxies whose star-formation rates and stellar masses place them below the ridge of the star-forming Main Sequence. In optically-selected type 2 AGN/LINERs/Composites, we find an empirical relation between gas-phase metallicity gradients $\nabla Z$ and global molecular gas depletion times $t_\mathrm{dep} = M_{H_2}$/SFR with "more quenched" systems showing flatter/positive gradients. Our results are based on the O3N2 metallicity diagnostic (applied to star-forming regions within a given galaxy) which was recently suggested to also be robust against emission by diffuse ionised gas (DIG) and low-ionisation nuclear emission regions (LINERs). We conduct a systematic investigation into possible drivers of the observed $\nabla Z$ - $t_\mathrm{dep}$ relation (ouflows, gas accretion, in-situ star formation, mergers, and morphology). We find a strong relation between $\nabla Z$ or $t_\mathrm{dep}$ and centralised outflow strength traced by the [OIII] velocity broadening. We also find signatures of suppressed star-formation in the outskirts in AGN-like galaxies with long depletion times and an enhancement of metals in the outer regions. We find no evidence of inflows impacting the metallicity gradients, and none of our results are found to be significantly affected by merger activity or morphology. We thus conclude that the observed $\nabla Z$ - $t_\mathrm{dep}$ relation may stem from a combination of metal redistribution via weak feedback, and a connection to in-situ star formation via a resolved mass-metallicity-SFR relation.

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