论文标题

SDSS-IV漫画:螺旋星系中的条形与恒星形成的早期停止之间的联系

SDSS-IV MaNGA: The link between bars and the early cessation of star formation in spiral galaxies

论文作者

Fraser-McKelvie, Amelia, Merrifield, Michael, Aragón-Salamanca, Alfonso, Peterken, Thomas, Kraljic, Katarina, Masters, Karen, Stark, David, Fragkoudi, Francesca, Smethurst, Rebecca, Boardman, Nicholas Fraser, Drory, Niv, Lane, Richard R.

论文摘要

棒在低红移磁盘星系中很常见,因此量化其对宿主的影响对于星系进化的领域至关重要。我们确定了漫画星系调查中245个禁止星系的恒星种群和星形形成历史,并将其与未挂钩星系的质量和形态匹配的比较样本进行比较。在固定的恒星质量和形态上,禁止的星系在光学上是红色的,而不是其未挂牌的对应物。从使用完整的光谱拟合代码星光的恒星种群分析,我们将这种差异归因于较旧和更金属的恒星种群。但是,在禁止样品中,灰尘衰减较低。禁止星系的恒星形成历史早于其非管子的峰值,并且星系在早期的质量中建立了质量。我们可以检测到该样品中禁止和无键星系的本地环境没有显着差异,但是发现高质量中的HI气体质量分数明显低于($ \ rm {M} _ {\ star}> 10^{10^{10} {10} {10}〜\ rm {M} _ {m} _ {m} _ {\ odot} _ {\ odot} $)nonnnonn-barr counter-unter-barr counterp ounter-under counterp ounter-counter-counter-counter-counter-counter-counter-counter-counterp counterp outs counterp counterp。我们推测了允许禁止星系较旧的机制,如今越来越多,金属富含金属且贫困较高,包括对银河喷泉副产品的有效再分配,以及在气体杆磁盘中的失控条形形成场景。尽管无法完全确定棒对银河系淬火的影响,但我们得出结论,杆的存在和星系内恒星形成的早期停止是密切相关的。

Bars are common in low-redshift disk galaxies, and hence quantifying their influence on their host is of importance to the field of galaxy evolution. We determine the stellar populations and star formation histories of 245 barred galaxies from the MaNGA galaxy survey, and compare them to a mass- and morphology-matched comparison sample of unbarred galaxies. At fixed stellar mass and morphology, barred galaxies are optically redder than their unbarred counterparts. From stellar population analysis using the full spectral fitting code Starlight, we attribute this difference to both older and more metal-rich stellar populations. Dust attenuation however, is lower in the barred sample. The star formation histories of barred galaxies peak earlier than their non-barred counterparts, and the galaxies build up their mass at earlier times. We can detect no significant differences in the local environment of barred and un-barred galaxies in this sample, but find that the HI gas mass fraction is significantly lower in high-mass ($\rm{M}_{\star} > 10^{10}~\rm{M}_{\odot}$) barred galaxies than their non-barred counterparts. We speculate on the mechanisms that have allowed barred galaxies to be older, more metal-rich and more gas-poor today, including the efficient redistribution of galactic fountain byproducts, and a runaway bar formation scenario in gas-poor disks. While it is not possible to fully determine the effect of the bar on galaxy quenching, we conclude that the presence of a bar and the early cessation of star formation within a galaxy are intimately linked.

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