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Thermohaline mixing in super-AGB stars

机译:超级AGB星中的热盐混合

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Aims. We present the first study of the effects of thermohaline mixing on the structure and evolution of solar-composition super-AGB (SAGB) stars in the mass range 9-11.Methods. We developed and analyzed stellar models taking into account thermohaline mixing and varying mixing efficiencies. Results. In SAGB stars, thermohaline mixing becomes important after carbon has been ignited off-center and it affects significantly the propagation of the flame. In the radiative layers located below the convective carbon-burning zone, a molecular weight inversion is created which allows the efficient transport of chemicals. The outward diffusion of 12C from the CO-rich core into the flame, depletes the burning front of fuel and causes the extinction of the flame before it reaches the center. As a consequence the amount of unburnt carbon can be as high as in mass at the center of the star. During the subsequent thermally pulsing SAGB phase, the high temperature at the base of the convective envelope prevents the development of thermohaline instabilities associated with 3He burning as found in low-mass red giant stars. Conclusions. In contrast to the case of low-mass RGBstars, thermohaline mixing is unable to alter the surface composition of SAGB stars. We also emphasize that if the SAGB star evolves into an electron-capture supernovae, the 12C remaining in the core may alter the hydrodynamical explosion and modify the explosive nucleosynthesis. Key words: stars: evolution - stars: supernovae: general - nuclear reactions, nucleosynthesis, abundances - instabilities
机译:目的我们目前对质量盐混合对9-11质量范围内太阳组成超级AGB(SAGB)星的结构和演化的影响进行了首次研究。我们开发和分析了恒星模型,同时考虑了热盐混合和变化的混合效率。结果。在SAGB恒星中,碳被偏心点火后,热盐混合变得非常重要,它会显着影响火焰的传播。在位于对流碳燃烧区下方的辐射层中,产生了分子量反转,从而可以有效地传输化学物质。 12 C从富含CO的芯向外扩散到火焰中,耗尽了燃料的燃烧前沿,并导致火焰在到达中心之前熄灭。结果,未燃烧碳的量可能与恒星中心的质量一样高。在随后的热脉冲SAGB阶段,对流包层底部的高温阻止了与3He燃烧相关的热盐碱不稳定性的发展,低质量红色巨星中发现了3He燃烧。结论。与低质量RGBstar的情况相反,热盐混合不会改变SAGB星星的表面成分。我们还强调,如果SAGB星演化为电子捕获超新星,则保留在核心中的12C可能会改变流体动力学爆炸并改变爆炸核合成。关键词:恒星:演化-恒星:超新星:一​​般-核反应,核合成,丰度-不稳定性

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