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首页> 外文期刊>Astronomy and astrophysics >The impact of an updated 14N(p, γ)15O reaction rate on advanced evolutionary stages of low-mass stellar models
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The impact of an updated 14N(p, γ)15O reaction rate on advanced evolutionary stages of low-mass stellar models

机译:更新的14N(p,γ)15O反应速率对低质量恒星模型高级演化阶段的影响

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摘要

We investigate the impact of the 14N(p,γ)15O reaction rate as redetermined by the LUNA experiment, on the shell H-burning and core He-burning phases of low-mass, metal-poor stellar models. The new reaction rate has small but noticeable effects, the largest one being a ?~7?8% reduction in the red giant branch lifetimes. To different degrees, the lifetimes and luminosities of horizontal branch models, the mass of the stellar models evolving within the RR?Lyrae instability strip, the?luminosity of the red giant branch luminosity function bump, the?theoretical calibrations of the R-parameter, and the tip of the red giant branch luminosity are also affected. Predictions for the tip of the red giant branch luminosity, in?particular, are in very good agreement with the currently available empirical constraints.
机译:我们研究了LUNA实验确定的14N(p,γ)15O反应速率对低质量,金属贫乏的恒星模型的壳H燃烧和核心He燃烧阶段的影响。新的反应速率影响不大,但效果显着,最大的反应是红色巨分子分支寿命降低了约7%〜7%。水平分支模型的寿命和发光度,在RR?Lyrae不稳定性带内演化的恒星模型的质量,红色巨型分支发光度函数的发光度,R参数的理论校正,而且红色巨枝末端的发光度也受到影响。尤其是对红色大树枝的光度尖端的预测与当前可用的经验约束非常吻合。

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