首页> 外文期刊>Astronomy and astrophysics >The 12CO/13CO ratio in AGB stars of different chemical type - Connection to the 12C/13C ratio and the evolution along the AGB
【24h】

The 12CO/13CO ratio in AGB stars of different chemical type - Connection to the 12C/13C ratio and the evolution along the AGB

机译:不同化学类型的AGB星中的12CO / 13CO比-与12C / 13C比的关系以及沿AGB的演化

获取原文
           

摘要

Aims. The aim of this paper is to investigate the evolution of the 12C/13C ratio along the AGB through the circumstellar 12CO/13CO abundance ratio. This is the first time a sample including a significant number of M- and S-type stars is analysed together with a carbon-star sample of equal size, making it possible to investigate trends among the different types and establish evolutionary effects. Methods. The circumstellar 12CO/13CO abundance ratios are estimated through a detailed radiative transfer analysis of single-dish radio line emission observations. Several different transitions have been observed for each source to ensure that a large extent of the circumstellar envelope is probed and the radiative transfer model is well constrained. The radiative transfer model is based on the Monte Carlo method and has been benchmarked against a set of similar codes. It assumes that the radiation field is non-local and solves the statistical equilibrium equations in full non-local thermodynamic equilibrium. The energy balance equation, determining the gas temperature distribution, is solved self-consistently, and the effects of thermal dust radiation (as estimated from the spectral energy distribution) are taken into account. First, the 12CO radiative transfer is solved, assuming an abundance (dependent on the chemical type of the star), to give the physical parameters of the gas, i.e. mass-loss rate, ?, gas expansion velocity, υe, and gas temperature distribution. Then, the 13CO radiative transfer is solved using the results of the 12CO model giving the 13CO abundance. Finally, the 12CO/13CO abundance ratio is calculated. Results. The circumstellar 12CO/13CO abundance ratio differs between the three spectral types. This is consistent with what is expected from stellar evolutionary models assuming that the spectral types constitute an evolutionary sequence; however, this is the first time this has been shown observationally for a relatively large sample covering all three spectral types. The median value of the 13CO abundance in the inner circumstellar envelope is 1.6 × 10-5, 2.3 × 10-5, and 3.0 × 10-5 for the M-type, S-type, and carbon stars of the sample, respectively, corresponding to 12CO/13CO abundance ratios of 13, 26, and 34, respectively. The spread in the 13CO abundance, quantified by the ratio between the 90th and 10th percentile, is 4, 3, and 15 for the M-type, S-type, and carbon stars, respectively. Interestingly, the abundance ratio spread of the carbon stars is much larger than for the M- and S-type stars, even when excluding J-type carbon stars, in line with what could be expected from evolution on the AGB. We find no correlation between the isotopologue ratio and the mass-loss rate, as would be expected if both increase as the star evolves.
机译:目的本文的目的是通过绕星云的12CO / 13CO丰度比研究12C / 13C比沿AGB的演变。这是首次对包括大量M型和S型恒星的样本以及大小相等的碳星样本进行分析,从而有可能研究不同类型之间的趋势并建立进化效应。方法。通过对单碟无线电线路发射观测资料进行详细的辐射转移分析,可以估算出星际12CO / 13CO的丰度比。对于每个辐射源,已经观察到几种不同的跃迁,以确保探测到大部分的星际包络并且辐射传输模型受到了很好的约束。辐射传输模型基于蒙特卡洛方法,并已针对一组类似代码进行了基准测试。假定辐射场是非局部的,并在完全非局部的热力学平衡中求解统计平衡方程。可自洽求解确定气体温度分布的能量平衡方程式,并考虑了热粉尘辐射的影响(根据光谱能量分布估算)。首先,假设存在丰度(取决于恒星的化学类型),即可解决12CO辐射传递问题,从而给出气体的物理参数,即质量损失率,η,气体膨胀速度,υe和气体温度分布。然后,使用给出13CO丰度的12CO模型的结果来求解13CO辐射传递。最后,计算出12CO / 13CO的丰度比。结果。三种光谱类型之间的星际12CO / 13CO丰度比不同。假设光谱类型构成了一个进化序列,这与恒星演化模型所期望的一致。但是,这是第一次观察到涵盖所有三种光谱类型的相对较大的样品。对于样品的M型,S型和碳星,内旋鞘内13CO丰度的中值分别为1.6×10-5、2.3×10-5和3.0×10-5,分别对应于12CO / 13CO丰度比分别为13、26和34。 M型星,S型星和碳星的13CO丰度分布(分别由第90个百分位和第10个百分位之间的比率量化)分别为4、3和15。有趣的是,即使不包括J型碳星,碳星的丰度比分布也比M型和S型星大得多,这与AGB演化所期望的一致。我们发现,在同位素同位素比和质量损失率之间没有相关性,如果两者都随着恒星的发展而增加,这是可以预期的。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号