论文标题

简单恒星种群的全光谱拟合精确。 iv。与颜色刻度图的结果进行系统的比较

On the Precision of Full-Spectrum Fitting of Simple Stellar Populations. IV. A Systematic Comparison with Results from Colour-Magnitude Diagrams

论文作者

Asa'd, Randa, Goudfrooij, Paul, As'ad, A. M.

论文摘要

在有关通过全光谱拟合技术获得的恒星种群精确度的系列文章中的第四篇论文中,我们提供了第一个系统分析,该分析比较了从分辨率和未解决的数据(即使用颜色魔术图(CMDS)和ISSTALES PALAYSROSCR SPERESR SETRRESTR SPERESR SETR)中获得的年龄,金属性和变红簇的恒星簇的重新登录。我们研究了用Padova等线和雾等位线获得的结果。我们发现,通常在CMD和集成光谱的年龄之间有一个很好的一致性。但是,对于金属性和红色,CMD分析结果与集成光谱的结果之间的一致性明显更糟。我们的结果还表明,使用Padova等线导出的年龄与使用Mist Isochrones得出的年龄相匹配,均与全光谱拟合技术和CMD拟合方法相匹配。但是,使用PADOVA等线源得出的金属度与使用CMD方法使用MIST同句得出的金属度不匹配。我们检查了全光谱拟合技术在群集中检测年龄扩散的能力,这些群集具有扩展主序列使用两种构造拟合的关闭(EMSTO)现象的能力。我们发现,样本中的5个EMSTO群集中有3个最适合一个年龄,这表明EMSTO不一定会在综合的光研究中转化为可检测的年龄扩散。

In this fourth paper of a series on the precision of ages of stellar populations obtained through the full-spectrum fitting technique, we present a first systematic analysis that compare the age, metallicity and reddening of star clusters obtained from resolved and unresolved data (namely colour-magnitude diagrams (CMDs) and integrated-light spectroscopy) using the same sets of isochrones. We investigate the results obtained with both Padova isochrones and MIST isochrones. We find that there generally is a good agreement between the ages derived from CMDs and integrated spectra. However, for metallicity and reddening, the agreement between results from analyses of CMD and integrated spectra is significantly worse. Our results also show that the ages derived with Padova isochrones match those derived using MIST isochrones, both with the full spectrum fitting technique and the CMD fitting method. However, the metallicity derived using Padova isochrones does not match that derived using MIST isochrones using the CMD method. We examine the ability of the full-spectrum fitting technique in detecting age spreads in clusters that feature the extended Main Sequence Turn Off (eMSTO) phenomenon using two-population fits. We find that 3 out of 5 eMSTO clusters in our sample are best fit with one single age, suggesting that eMSTOs do not necessarily translate to detectable age spreads in integrated-light studies.

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