论文标题
GASP XXVII:磁盘星系中的气相金属缩放关系,带有或不带有压纹剥离
GASP XXVII: Gas-phase metallicity scaling relations in disk galaxies with and without ram-pressure stripping
论文作者
论文摘要
利用MUSE(GASP)调查的星系中的气体剥离现象的数据,我们研究了29个经历了RAM压剥离的29个集群星系样品的气相金属性缩放关系,并参考了(16个集群和16个场)星系的参考样品,没有明显的气体干扰迹象。我们采用PYQZ代码来推断有效半径处的平均气体金属性,并在恒星质量范围内实现明确定义的质量金属关系(MZR)$ 10^{9.25} \ le M_ \ lem_ \ star \ star \ star \ le 10^{11.5} {11.5} {11.5} \,在任何给定的质量上,参考群集和剥离星系具有相似的金属度,而$ M_ \ star <10^{10.25} \,{\ rm m_ \ odot} $平均比星系中的气体金属度平均低。我们的结果表明,在有效半径上,剥离星系的化学特性与冲突压剥离机理无关。尽管如此,在最低质量下,我们检测到4个剥离星系,远高于常见的MZR,这表明情况更复杂。总体而言,我们发现金属性与恒星形成速率和星系大小之间的抗相关性迹象与先前的研究一致。簇中的光环质量,集中距离和局部星系密度没有发现明显的趋势。总之,我们建议对星系的空间分析气体金属图进行更详细的分析,以突出由于RAM压剥离而导致的磁盘内气体重新分布的影响。
Exploiting the data from the GAs Stripping Phenomena in galaxies with MUSE (GASP) survey, we study the gas-phase metallicity scaling relations of a sample of 29 cluster galaxies undergoing ram-pressure stripping and of a reference sample of (16 cluster and 16 field) galaxies with no significant signs of gas disturbance. We adopt the PYQZ code to infer the mean gas metallicity at the effective radius and achieve a well-defined mass-metallicity relation (MZR) in the stellar mass range $10^{9.25}\le M_\star \le 10^{11.5}\,{\rm M_\odot}$ with a scatter of 0.12 dex. At any given mass, reference cluster and stripping galaxies have similar metallicities, while the field galaxies with $M_\star < 10^{10.25}\,{\rm M_\odot}$ show on average lower gas metallicity than galaxies in clusters. Our results indicate that at the effective radius the chemical properties of the stripping galaxies are independent of the ram-pressure stripping mechanism. Nonetheless, at the lowest masses we detect 4 stripping galaxies well above the common MZR that suggest a more complex scenario. Overall, we find signs of an anti-correlation between the metallicity and both the star formation rate and the galaxy size, in agreement with previous studies. No significant trends are instead found with the halo mass, clustercentric distance and local galaxy density in clusters. In conclusion, we advise a more detailed analysis of the spatially resolved gas metallicity maps of the galaxies, able to highlight effects of gas redistribution inside the disk due to the ram-pressure stripping.