论文标题

SDSS-IV/漫画:冲动的气态流入能否解释陡峭的氧气丰富度\&低低的金属性区域?

SDSS-IV/MaNGA: Can impulsive gaseous inflows explain steep oxygen abundance profiles \& anomalously-low-metallicity regions?

论文作者

Pace, Zachary J., Tremonti, Christy, Schaefer, Adam L., Stark, David V., Witherspoon, Catherine A., Masters, Karen L., Drory, Niv, Zhang, Kai

论文摘要

气态流入是星系制造恒星燃料的必要供应商,但在调查范围内很难表征。我们使用对气相金属性和总原子气体质量的单次无线电测量的整体场光谱测量值,以估计出现在星形星系上的气态流入的幅度和频率。我们揭示了陡峭的氧气丰度之间的相关性,在$ 0.25-1.5 r_e $之间,金属的变异性增加了$ 1.25-1.75 r_e $,而固定的Galaxy Stellar恒星质量的HI含量升高。使用简单但直观的流入模型,我们发现总恒星质量的星系小于$ 10^{10.1} {\ rm m _ {\ odot}} $具有与流入恢复的局部氧气丰富度曲线。大约10-25%的低质量星系具有近期吸积的签名,估计典型的增强局局部气体质量表面密度约为10-90 \%。高质量星系对此类流入的证据有限。 HI质量的巨大多样性意味着流入相关的气体应该远离恒星磁盘。因此,我们建议将高质量,陡峭的金属型在$ 0.25-1.5 r_e $之间以及宽阔的金属分配功能之间使用$ 1.25-1.75 r_e $在$ 1.25-1.75 R_E $之间,以针对高分辨率无线电无线电随访的可能流动气体的宿主。

Gaseous inflows are necessary suppliers of galaxies' star-forming fuel, but are difficult to characterize at the survey scale. We use integral-field spectroscopic measurements of gas-phase metallicity and single-dish radio measurements of total atomic gas mass to estimate the magnitude and frequency of gaseous inflows incident on star-forming galaxies. We reveal a mutual correlation between steep oxygen abundance profiles between $0.25-1.5 R_e$, increased variability of metallicity between $1.25-1.75 R_e$, and elevated HI content at fixed total galaxy stellar mass. Employing a simple but intuitive inflow model, we find that galaxies with total stellar mass less than $10^{10.1} {\rm M_{\odot}}$ have local oxygen abundance profiles consistent with reinvigoration by inflows. Approximately 10-25\% of low-mass galaxies possess signatures of recent accretion, with estimated typical enhancements of approximately 10-90\% in local gas mass surface density. Higher-mass galaxies have limited evidence for such inflows. The large diversity of HI mass implies that inflow-associated gas ought to reside far from the star-forming disk. We therefore propose that a combination of high HI mass, steep metallicity profile between $0.25-1.5 R_e$, and wide metallicity distribution function between $1.25 - 1.75 R_e$ be employed to target possible hosts of inflowing gas for high-resolution radio follow-up.

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