论文标题

极端的AGB明星是在信封后的二进制文件吗?

Are extreme AGB stars post-common envelope binaries?

论文作者

Dell'Agli, F., Marini, E., D'Antona, F., Ventura, P., Groenewegen, M. A. T., Mattsson, L., Kamath, D., García-Hernández, D. A., Tailo, M.

论文摘要

模拟单星星中的灰尘形成,通过渐近巨型分支(AGB)的碳星阶段演变出来,除了一小部分非常红色的物体(Eross)外,大多数C型麦哲伦云(LMC)中大多数C富含C的中间颜色和大小。 EROS光谱能量分布的分析表明存在大量灰尘,这些灰尘要求流出中的气体密度明显高于理论建模的预期。我们建议涉及共同包膜(CE)进化的二元相互作用机制可能是这些特殊恒星的可能解释。 C $/$ O克服统一后发生的恒星半径的快速增长使CE阶段受到青睐。我们对灰尘的建模提供了与观测值$ \ dot m \ sim 5 \ times 10^{ - 4}〜\ dot m/$ yr相一致的结果,这是对CE阶段经历的信封快速损失的下限。我们建议,爱神可能会隐藏轨道时期$ \ sim $ days的二进制文件,并且很可能负责星系中灰尘生产率的很大一部分。

Modelling dust formation in single stars evolving through the carbon-star stage of the asymptotic giant branch (AGB) reproduces well the mid-infrared colours and magnitudes of most of the C-rich sources in the Large Magellanic Cloud (LMC), apart from a small subset of extremely red objects (EROs). The analysis of EROs spectral energy distribution suggests the presence of large quantities of dust, which demand gas densities in the outflow significantly higher than expected from theoretical modelling. We propose that binary interaction mechanisms that involve common envelope (CE) evolution could be a possible explanation for these peculiar stars; the CE phase is favoured by the rapid growth of the stellar radius occurring after C$/$O overcomes unity. Our modelling of the dust provides results consistent with the observations for mass-loss rates $\dot M \sim 5\times 10^{-4}~\dot M/$yr, a lower limit to the rapid loss of the envelope experienced in the CE phase. We propose that EROs could possibly hide binaries of orbital periods $\sim$days and are likely to be responsible for a large fraction of the dust production rate in galaxies.

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