论文标题
Vandels调查:Z〜3的星形星系中的紫外线连续斜率与恒星金属性之间的关系
The VANDELS survey: the relation between UV continuum slope and stellar metallicity in star-forming galaxies at z~3
论文作者
论文摘要
高Z星系的恒星金属度(Z*)的估计值至关重要,以了解恒星质量,尘埃衰减,恒星年龄和金属性之间的灰尘效应的复杂性和相互关系。从红移2 <z <5中从Vandels调查中提取并堆叠在恒星质量(M*)和紫外线连续斜坡(β)中,我们估计其恒星金属Z*从恒星的量表中估算出15001和179的特征,从而在1501和179在很大程度上不受恒星年龄,灰尘,IMF,Nebular Continuum或星际吸收的影响。将它们与基于光度的光谱斜率进行比较,范围为1250-1750埃斯特罗姆,我们发现恒星金属性从β〜 -2到β〜 -1(1 <a(1600)<3.2)增加了〜0.5 dex,并且具有beta的依赖性在固定的UV绝对速度m(uv)和stellar mass和stellar mass和stellar mass和10^5(95)。结果,金属性是基于M(UV)和M*正确重新固定灰尘校正的基本要素。使用相同的吸收特征,我们分析了质量金属关系(MZR),并发现它与基于FUV光谱的全局拟合的先前Vandels估计是一致的。同样,我们也没有发现z = 2和z = 3.5之间的显着演变。最后,我们的MZR和Z*-Beta关系的斜率与研究良好的半分析模型(SAM)的半分析模型的预测一致,而某些具有观测的紧张局势仍然与绝对金属性归一化。紫外线与恒星金属性之间的关系对于使用下一代望远镜进行大规模调查以及在我们宇宙的前十亿年中对星系的物理表征至关重要。
The estimate of stellar metallicities (Z*) of high-z galaxies are of paramount importance in order to understand the complexity of dust effects and the reciprocal interrelations among stellar mass, dust attenuation, stellar age, and metallicity. Benefiting from uniquely deep FUV spectra of >500 star-forming galaxies at redshifts 2<z<5 extracted from the VANDELS survey and stacked in bins of stellar mass (M*) and UV continuum slope (beta), we estimate their stellar metallicities Z* from stellar photospheric absorption features at 1501 and 1719 Angstrom, which are calibrated with Starburst99 models and are largely unaffected by stellar age, dust, IMF, nebular continuum or interstellar absorption. Comparing them to photometric based spectral slopes in the range 1250-1750 Angstrom, we find that the stellar metallicity increases by ~0.5 dex from beta ~ -2 to beta ~ -1 (1 < A(1600) < 3.2), and a dependence with beta holds at fixed UV absolute luminosity M(UV) and stellar mass up to 10^(9.65) Msun. As a result, the metallicity is a fundamental ingredient for properly rescaling dust corrections based on M(UV) and M*. Using the same absorption features, we analyze the mass-metallicity relation (MZR) and find it is consistent with the previous VANDELS estimation based on a global fit of the FUV spectra. Similarly, we do not find a significant evolution between z=2 and z=3.5. Finally, the slopes of our MZR and Z*-beta relation are in agreement with the predictions of well-studied semi-analytic models of galaxy formation (SAM), while some tensions with observations remain as to the absolute metallicity normalization. The relation between UV slope and stellar metallicity is fundamental for the exploitation of large volume surveys with next-generation telescopes and for the physical characterization of galaxies in the first billion years of our Universe.