SMARTY:英里级适度分辨率的全新星空图书馆

Michele Bertoldo-Coelho, R. Riffel, Marina Trevisan, N. Dametto, L. Dahmer-Hahn, Paula Coelho, Lucimara P. Martins, D. Ruschel-Dutra, A. Vazdekis, Alberto Rodr'iguez-Ardila, A. Chies-Santos, R. Riffel, F. L. Barbera, I. M. Navarro, J. Barroso, Tatiana Moura
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引用次数: 0

摘要

大多数观测到的星系都无法分辨出单个恒星,只能通过简单恒星群(SSP)模型的综合光谱来研究,恒星库是建立这些模型的关键要素。光谱观测正越来越多地转向近红外(NIR),而在近红外光谱方面还有许多问题有待探索。近红外的 SSP 仍然有限,而且不同模型之间也存在不一致。减少这一问题的方法之一是建立可靠的近红外恒星库。这项工作的主要目标是建立一个由 8.1 米双子座北望远镜的双子座近红外摄谱仪(GNIRS)观测到的 31 颗恒星组成的 0.9 - 2.4 μm 恒星光谱库 smarty(miles 中分辨率近红外恒星库),并将其提供给社区。这些恒星是从里程库中挑选出来的,它们的大气参数都是可靠的(并且经过了很好的测试),可以填充赫兹普隆-拉塞尔(HR)图的不同区域。此外,其中五颗恒星有近红外光谱,我们用它们来评估 smarty 的质量。其余 26 颗恒星的近红外光谱则是首次出现。我们将观测到的smarty光谱与合成光谱和内插光谱进行了比较,发现在两组比较中,等效宽度的平均差异为$\sim 20\%$ ,而整个continuum形状的平均差异为∼1%。我们计算了分光光度的宽带星等和颜色,并与 2MASS 的星等和颜色进行了比较,结果发现星等和颜色的平均差异分别高达 0.07 和 0.10 等。总的来说,利用内插恒星和理论恒星的连续波校正的 smarty 光谱之间的差异很小。
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SMARTY: The mileS Moderate resolution neAr-infRared sTellar librarY
Most of the observed galaxies cannot be resolved into individual stars and are studied through their integrated spectrum using simple stellar populations (SSPs) models, with stellar libraries being a key ingredient in building them. Spectroscopic observations are increasingly being directed towards the near-infrared (NIR), where much is yet to be explored. SSPs in the NIR are still limited, and there are inconsistencies between different sets of models. One of the ways to minimize this problem is to have reliable NIR stellar libraries. The main goal of this work is to present smarty (mileS Moderate resolution neAr-infRared sTellar librarY) a ∼0.9 − 2.4 μm stellar spectral library composed of 31 stars observed with the Gemini Near-IR Spectrograph (GNIRS) at the 8.1 m Gemini North telescope and make it available to the community. The stars were chosen from the miles library, for which the atmospheric parameters are reliable (and well tested), to populate different regions of the Hertzsprung-Russell (HR) diagram. Furthermore, five of these stars have NIR spectra available that we use to assess the quality of smarty. The remaining 26 stars are presented for the first time in the NIR. We compared the observed smarty spectra with synthetic and interpolated spectra, finding a mean difference of $\sim 20\%$ in the equivalent widths and ∼1% in the overall continuum shape in both sets of comparisons. We computed the spectrophotometric broadband magnitudes and colours and compared them with the 2MASS ones, resulting in mean differences up to 0.07 and 0.10 mag in magnitudes and colours, respectively. In general, a small difference was noted between the smarty spectra corrected using the continuum from the interpolated and the theoretical stars.
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