论文标题
l-galaxies 2020:径向金属曲线和圆盘星系中全球金属的演变
L-GALAXIES 2020: The evolution of radial metallicity profiles and global metallicities in disc galaxies
论文作者
论文摘要
我们提出了L-Galaxies 2020半分析模型的修改版,其中包括Supernovae(SNE)显着增加了圆周形培养培养基(CGM)的直接金属富集。与其他一些Galaxy Evolution模型相比,这些富含金属的流出不需要增加的质量加载因子。这种经过修改的L-Galaxies 2020模型能够同时再现气相金属性$(Z _ {\ rm G})$和Stellar Metalicity $(Z _ {*})$ radial概况,在附近的银河系中观察到的漫画和博物馆及其$ s noss to $ nsult and Mose-Sarts Attellicity and $ n $ z \ sim {} 2-3 $。首选SNE-II的直接CGM富集分数$ \ sim {} 90 \%$。我们发现,由于通过内而外的增长和金属富含金属的增生,大量的圆盘星系比在L-Galaxies中的低质量含量略微略微$ z {\ rm g} $概要文件。恒星质量与$ z _ {\ rm g} $ profile Slope之间的如此弱,正相关,在我们的571个571恒星形成椎间盘的漫画-DR15样品中也可以看到。虽然,低于$ {\ rm log}(m _ {*}/{\ rm m} _ {\ odot})\ sim {} 10.0 $此观察结果非常依赖于金属性诊断和形态选择。此外,降低的最大SN-II祖细胞质量为$ 25 {\ rm m} _ {\ odot} $,反映了最新的理论和观察性估计,也可以为观察到的金属概况提供良好的匹配,即在$ z = 0 $ z = 0 $ in l-galaxies in L-galaxies 2020中2020年的固定版本。时间,或在簇内培养基(ICM)中观察到的镁丰度。
We present a modified version of the L-GALAXIES 2020 semi-analytic model of galaxy evolution, which includes significantly increased direct metal enrichment of the circumgalactic medium (CGM) by supernovae (SNe). These more metal-rich outflows do not require increased mass-loading factors, in contrast to some other galaxy evolution models. This modified L-GALAXIES 2020 model is able to simultaneously reproduce the gas-phase metallicity $(Z_{\rm g})$ and stellar metallicity $(Z_{*})$ radial profiles observed in nearby disc galaxies by MaNGA and MUSE, as well as the observed mass - metallicity relations for gas and stars at $z=0$ and their evolution back to $z\sim{}2-3$. A direct CGM enrichment fraction of $\sim{}90\%$ for SNe-II is preferred. We find that massive disc galaxies have slightly flatter $Z_{\rm g}$ profiles than their lower-mass counterparts in L-GALAXIES 2020, due to more efficient enrichment of their outskirts via inside-out growth and metal-rich accretion. Such a weak, positive correlation between stellar mass and $Z_{\rm g}$ profile slope is also seen in our MaNGA-DR15 sample of 571 star-forming disc galaxies. Although, below ${\rm log}(M_{*}/{\rm M}_{\odot})\sim{}10.0$ this observational result is strongly dependent on the metallicity diagnostic and morphological selection chosen. In addition, a lowered maximum SN-II progenitor mass of $25{\rm M}_{\odot}$, reflecting recent theoretical and observational estimates, can also provide a good match to observed metallicity profiles at $z=0$ in L-GALAXIES 2020. However, this model version fails to reproduce an evolution in $Z_{\rm g}$ at fixed mass over cosmic time, or the magnesium abundances observed in the intracluster medium (ICM).