论文标题

非常巨大的恒星的质量损失实施和温度演变

Mass-loss implementation and temperature evolution of very massive stars

论文作者

Sabhahit, Gautham N., Vink, Jorick S., Higgins, Erin R., Sander, Andreas A. C.

论文摘要

由于它们的电离辐射和极端的恒星风,非常巨大的恒星(VM)主导着年轻簇的物理。正是这些风来决定它们的生命疗法,直到到期为止。拱门集群中的观察结果表明,VM都具有相似的温度。 VLT -FLAME TARANTULA调查分析了LMC的30个DOR区域中的VM,还发现了狭窄的温度范围,尽管值较高,但可能是金属性效应。使用MESA,我们使用新的质量损失食谱研究VM的主要序列演变,该食谱从光学上薄的O-Star风转换为通过模型无关的Vink&Gräfener的模型非依赖性的过渡质量质量,转变为光学厚的狼射线型风。我们检查了VM的温度演化,并以质量损失的质量量(L/M)比和Eddington参数($γ_ {\ rm E} $)缩放,评估了表面氢(H)丰度的相关性,从而设置了自由电子的数量。我们在银河系和LMC金属性上介绍了VMS模型的网格,并将我们的温度预测与经验结果进行了比较。具有陡峭的$γ_ {\ rm e} $ - 依赖性的模型在赫尔茨普朗 - 鲁塞尔(HR)图中的水平发展,几乎恒定的发光度,需要在整个VMS质量范围内的信封通货膨胀和增强质量损失之间的微妙且不可能平衡。相比之下,具有陡峭的L/M依赖性质量损失的模型显示在几乎恒定的TEFF下在HR-Dagram中垂直演变,自然地重现了观察到的温度的狭窄范围,以及具有金属性的正确趋势。陡峭的亮度的这种独特的行为是一种自我调节机制,在HR-DIAGRAM中的演变过程中保持温度恒定。

Very massive stars (VMS) dominate the physics of young clusters due to their ionising radiation and extreme stellar winds. It is these winds that determine their lifepaths until expiration. Observations in the Arches cluster show that VMS all have similar temperatures. The VLT-Flames Tarantula survey analysed VMS in the 30 Dor region of the LMC also finding a narrow range of temperatures, albeit at higher values - likely a metallicity effect. Using MESA, we study the main-sequence evolution of VMS with a new mass-loss recipe that switches from optically-thin O-star winds to optically-thick Wolf-Rayet type winds through the model-independent transition mass-loss rate of Vink & Gräfener. We examine the temperature evolution of VMS with mass loss that scales with the luminosity-over-mass (L/M) ratio and the Eddington parameter ($Γ_{\rm e}$), assessing the relevance of the surface hydrogen (H) abundance which sets the number of free electrons. We present grids of VMS models at Galactic and LMC metallicity and compare our temperature predictions with empirical results. Models with a steep $Γ_{\rm e}$-dependence evolve horizontally in the Hertzsprung-Russel (HR) diagram at nearly constant luminosities, requiring a delicate and unlikely balance between envelope inflation and enhanced mass loss over the entire VMS mass range. By contrast, models with a steep L/M-dependent mass loss are shown to evolve vertically in the HR-diagram at nearly constant Teff, naturally reproducing the narrow range of observed temperatures, as well as the correct trend with metallicity. This distinct behavior of a steeply dropping luminosity is a self-regulatory mechanism that keeps temperatures constant during evolution in the HR-diagram.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源