论文标题

通过自洽的光谱建模来表征SDSS EELG的恒星含量

Characterisation of the stellar content of SDSS EELGs through self-consistent spectral modelling

论文作者

Breda, Iris, Vilchez, José M., Papaderos, Polychronis, Cardoso, Leandro, Amorin, Ricardo O., Arroyo-Polonio, Antonio, Iglesias-Páramo, Jorge, Kehrig, Carolina, Pérez-Montero, Enrique

论文摘要

极端发射线星系(EELG)是一个显着的星系属,最终被视为宇宙中午早期星系的局部原型。然而,其恒星含量的鲁棒表征受到光谱数据中存在的异常高的卵形发射的阻碍。如SDSS调查所观察到的那样,这项研究致力于恢复414个EELG的样本的恒星特性。这是通过光谱综合代码FADO实现的,该代码FADO自言自语考虑了光谱中的恒星和Nebular发射。此外,通过进一步处理纯出恒星光谱合成代码星光的EELG样品进行了比较分析,并通过将分析扩展到697个正常星形成星系的样本,预计将受到烟囱贡献的影响较小。我们发现,对于星系样品,星光的恒星质量和平均年龄估计是系统地偏向更高的值,并且只有仅当考虑到烟囱连续体发射时才有可能通过光谱合成对EELG的物理和进化特性的充分确定。此外,两个种群合成代码之间的差异可以通过特定的恒星形成速率和最突出的发射线的通量之和来归因于恒星形成活性的程度。正如预期的那样,基于理论框架,我们的结果强调了在执行光谱合成时考虑螺旋发射的重要性,即使对于托管典型的恒星形成活性水平的星系也是如此。

Extreme emission line galaxies (EELGs) are a notable galaxy genus, ultimately being regarded as local prototypes of early galaxies at the cosmic noon. Robust characterisation of their stellar content, however, is hindered by the exceptionally high nebular emission present in their optical spectroscopic data. This study is dedicated into recovering the stellar properties of a sample of 414 EELGs as observed by the SDSS Survey. Such is achieved by means of the spectral synthesis code FADO, which self-consistently considers the stellar and nebular emission in an optical spectrum. Additionally, a comparative analysis was carried on, by further processing the EELGs sample with the purely stellar spectral synthesis code Starlight, and by extending the analysis to a sample of 697 normal star-forming galaxies, expected to be less affected by nebular contribution. We find that, for both galaxy samples, stellar mass and mean age estimates by Starlight are systematically biased towards higher values, and that an adequate determination of the physical and evolutionary properties of EELGs via spectral synthesis is only possible when nebular continuum emission is taken into account. Moreover, the differences between the two population synthesis codes can be ascribed to the degree of star-formation activity through the specific star-formation rate and the sum of the flux of the most prominent emission lines. As expected, on the basis of the theoretical framework, our results emphasise the importance of considering the nebular emission while performing spectral synthesis, even for galaxies hosting typical levels of star-formation activity.

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