论文标题

IC 1613中的红色超级恒星和金属依赖性混合长度在进化模型中

Red supergiant stars in IC 1613 and metallicity-dependent mixing length in the evolutionary model

论文作者

Chun, Sang-Hyun, Yoon, Sung-Chul, Oh, Heeyoung, Park, Byeong-Gon, Hwang, Narae

论文摘要

我们报告了一项关于当地组不规则矮星系IC 1613中红色超级恒星(RSG)的光谱研究。我们通过合成频谱拟合在MMT望远镜上观察到的光谱,从1.16 $ m $ m至1.23 $ m $ m $ mmmirs仪器中,通过合成光谱拟合的合成光谱拟合来得出有效温度($ t_ \ mathrm {eff} $)和14 rsgs的金属度。发现以[Fe/H] = $ -0.65 $为中心的RSG金属性的弱双峰分布,该分布略低于或与小麦哲伦云(SMC)相当略低或可比。在整个银河系中,没有证据表明金属富富([fe/h] $> 0.65 $)与贫穷([fe/h] $ <-0.65 $)RSG之间的空间隔离。 IC 1613中RSG样品的平均有效温度比SMC高约250 K。但是,在我们的RSG样本中没有$ T_ \ MATHRM {EFF} $与金属性之间的相关性。我们通过将恒星进化轨道与HR图上的RSG位置进行比较,发现具有$α_ {\ Mathrm {maltrm {mlt}} = 2.2-2.4 H_p $的模型通过将对流的混合长度($α_ {\ Mathrm {Mlt}} $)进行校准,发现$α_ {\ MATHRM {mlt}} = 2.2-2.4 H_p $可以很好地repode porce proce porce porce porce porce porce porce porce porce proce porce porce proce porce porce porce porce porce proce, Schwarzschild和Ledoux对流标准。该结果支持我们先前的研究,即需要依赖金属性的混合长度来解释本地组观察到的RSG温度,但是我们发现,对于具有等于或小于SMC金属性的金属性的RSG而言,这种依赖性相对较弱。

We report a spectroscopic study on red supergiant stars (RSGs) in the irregular dwarf galaxy IC 1613 in the Local Group. We derive the effective temperatures ($T_\mathrm{eff}$) and metallicities of 14 RSGs by synthetic spectral fitting to the spectra observed with the MMIRS instrument on the MMT telescope for a wavelength range from 1.16 $μ$m to 1.23 $μ$m. A weak bimodal distribution of the RSG metallicity centered on the [Fe/H]=$-0.65$ is found, which is slightly lower than or comparable to that of the Small Magellanic Cloud (SMC). There is no evidence for spatial segregation between the metal rich ([Fe/H]$>-0.65$) and poor ([Fe/H]$<-0.65$) RSGs throughout the galaxy. The mean effective temperature of our RSG sample in IC 1613 is higher by about 250 K than that of the SMC. However, no correlation between $T_\mathrm{eff}$ and metallicity within our RSG sample is found. We calibrate the convective mixing length ($α_{\mathrm{MLT}}$) by comparing stellar evolutionary tracks with the RSG positions on the HR diagram, finding that models with $α_{\mathrm{MLT}}=2.2-2.4 H_P$ can best reproduce the effective temperatures of the RSGs in IC 1613 for both Schwarzschild and Ledoux convection criteria. This result supports our previous study that a metallicity dependent mixing length is needed to explain the RSG temperatures observed in the Local Group, but we find that this dependency becomes relatively weak for RSGs having a metallicity equal to or less than the SMC metallicity.

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