论文标题

SDSS-IV漫画:使用空间分辨的气体动力学精炼强线诊断分类

SDSS-IV MaNGA: Refining Strong Line Diagnostic Classifications Using Spatially Resolved Gas Dynamics

论文作者

Law, David R., Ji, Xihan, Belfiore, Francesco, Bershady, Matthew A., Cappellari, Michele, Westfall, Kyle B., Yan, Renbin, Bizyaev, Dmitry, Brownstein, Joel R., Drory, Niv, Andrews, Brett H.

论文摘要

我们使用漫画整体场光谱性星系调查的统计能力来改善用于对星系中气体电离特性进行分类的强线诊断边界的定义。我们检测到从7400个单独的星系中分布的360万个spaxels,跨越恒星质量,恒星形成率和形态类型,发现气相速度散布Sigma_halpha与传统的光学发射线比[S II II II II II II II I I I] I I I I I I I I I I I IMPHA,OO I I I I I I IMPHA,OO,OO,OO o。 iii]/hbeta。 Spaxels whose line ratios are most consistent with ionization by galactic HII regions exhibit a narrow range of dynamically cold line of sight velocity distributions (LOSVDs) peaked around 25 km/s corresponding to a galactic thin disk, while those consistent with ionization by active galactic nuclei (AGN) and low-ionization emission-line regions (LI(N)ERs) have significantly broader LOSVDs extending to 200 km/s。恒星形成,AGN和LI(n)ER区域在恒星速度分散,恒星人口年龄,Halpha等效宽度和典型的半径内彼此之间相互良好分离。我们使用我们的观察结果修改传统的发射线诊断分类,以便它们可靠地在诊断线比率空间的二维表示以及在多维的多维空间中可靠地识别出不同的动态样本,以说明恒星形成模型表面的复杂折叠。通过将漫画的观测与SDSS单纤维星系样品进行比较,我们注意到,后者有系统地偏向于3个Arcsec光纤足迹之外的年轻,低金属恒星形成区域。

We use the statistical power of the MaNGA integral-field spectroscopic galaxy survey to improve the definition of strong line diagnostic boundaries used to classify gas ionization properties in galaxies. We detect line emission from 3.6 million spaxels distributed across 7400 individual galaxies spanning a wide range of stellar masses, star formation rates, and morphological types, and find that the gas-phase velocity dispersion sigma_HAlpha correlates strongly with traditional optical emission line ratios such as [S II]/HAlpha, [N II]/HAlpha, [O I]/HAlpha, and [O III]/HBeta. Spaxels whose line ratios are most consistent with ionization by galactic HII regions exhibit a narrow range of dynamically cold line of sight velocity distributions (LOSVDs) peaked around 25 km/s corresponding to a galactic thin disk, while those consistent with ionization by active galactic nuclei (AGN) and low-ionization emission-line regions (LI(N)ERs) have significantly broader LOSVDs extending to 200 km/s. Star-forming, AGN, and LI(N)ER regions are additionally well separated from each other in terms of their stellar velocity dispersion, stellar population age, HAlpha equivalent width, and typical radius within a given galaxy. We use our observations to revise the traditional emission line diagnostic classifications so that they reliably identify distinct dynamical samples both in two-dimensional representations of the diagnostic line ratio space and in a multi-dimensional space that accounts for the complex folding of the star forming model surface. By comparing the MaNGA observations to the SDSS single-fiber galaxy sample we note that the latter is systematically biased against young, low metallicity star-forming regions that lie outside of the 3 arcsec fiber footprint.

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