论文标题
使用红色光谱线指数检测年轻($ \ leq $ 20 Myr)在显然淬灭的低质量星系中的恒星种群
Detection of young ($\leq$20 Myr) stellar populations in apparently quenched low-mass galaxies using red spectral line indices
论文作者
论文摘要
我们报告了从$ \\ leq $ 20 $ 20的低质量星系中,从漫画调查中选择的年龄$ \ leq $ 20 MYR的年轻恒星组成部分的少量贡献(质量约为1%)的发现。在28个星系的样本中,其中8个显示出遭受最近恒星形成的签名。该检测是通过分析红色光谱范围内的线 - 强度指数[5700,8800]Å完成的。红色超级巨头对这种红色制度的贡献的增加是导致指数测量相对于其在标准光谱范围内模型网格中的位置[3600,5700]Å的偏差。我们证明,为了区分真正的超元种群和这种偏差的其他可能原因,例如丰度比例的变化,需要将红色指数的组合以及对平均发光加权恒星种群的定性评估。我们的结果表明,许多大概是淬火的低质量星系实际上含有触发一定程度的恒星形成的气体。因此,他们要么积聚了外部气体,因此内部回收了恒星进化的足够的气体,以触发新的恒星形成,或者在骚扰后保持气体储层,或者剥离过程将其淘汰。由于我们发现非震动的星系及其环境之间没有特殊趋势,但内部流程受到青睐,尽管需要更多的工作来完全丢弃外部影响。
We report on the detection of a small contribution (around and below 1% in mass) from young stellar components with ages $\leq$20 Myr in low-mass galaxies purposely selected from the MaNGA survey to be already-quenched systems. Among the sample of 28 galaxies, eight of them show signatures of having suffered a very recent burst of star formation. The detection has been done through the analysis of line-strength indices in the red spectral range [5700,8800] Å. The increasing contribution of red supergiants to this red regime is responsible for a deviation of the index measurements with respect to their position within the model grids in the standard spectral range [3600,5700] Å. We demonstrate that a combination of red indices, as well as a qualitative assessment of the mean luminosity-weighted underlying stellar population, is required in order to distinguish between a true superyoung population and other possible causes of this deviation, such as abundance ratio variations. Our result implies that many presumably quenched low-mass galaxies actually contain gas that is triggering some level of star formation. They have, therefore, either accreted external gas, internally recycled enough gas from stellar evolution to trigger new star formation, or they kept a gas reservoir after the harassment or stripping process that quenched them in first place. Internal processes are favoured since we find no particular trends between our non-quenched galaxies and their environment, although more work is needed to fully discard an external influence.