首页> 外文期刊>The Astrophysical Journal. Supplement Series >Modules for experiments in stellar astrophysics (MESA): Planets, oscillations, rotation, and massive stars
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Modules for experiments in stellar astrophysics (MESA): Planets, oscillations, rotation, and massive stars

机译:恒星天体物理学(MESA)中的实验模块:行星,振荡,自转和大质量恒星

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We substantially update the capabilities of the open source software package Modules for Experiments in Stellar Astrophysics (MESA), and its one-dimensional stellar evolution module, MESA star. Improvements in MESA star's ability to model the evolution of giant planets now extends its applicability down to masses as low as one-tenth that of Jupiter. The dramatic improvement in asteroseismology enabled by the space-based Kepler and CoRoT missions motivates our full coupling of the ADIPLS adiabatic pulsation code with MESA star. This also motivates a numerical recasting of the Ledoux criterion that is more easily implemented when many nuclei are present at non-negligible abundances. This impacts the way in which MESA star calculates semi-convective and thermohaline mixing. We exhibit the evolution of 3-8 M_⊙ stars through the end of core He burning, the onset of He thermal pulses, and arrival on the white dwarf cooling sequence. We implement diffusion of angular momentum and chemical abundances that enable calculations of rotating-star models, which we compare thoroughly with earlier work. We introduce a new treatment of radiation-dominated envelopes that allows the uninterrupted evolution of massive stars to core collapse. This enables the generation of new sets of supernovae, long gamma-ray burst, and pair-instability progenitor models. We substantially modify the way in which MESA star solves the fully coupled stellar structure and composition equations, and we show how this has improved the scaling of MESA's calculational speed on multi-core processors. Updates to the modules for equation of state, opacity, nuclear reaction rates, and atmospheric boundary conditions are also provided. We describe the MESA Software Development Kit that packages all the required components needed to form a unified, maintained, and well-validated build environment for MESA. We also highlight a few tools developed by the community for rapid visualization of MESA star results.
机译:我们极大地更新了开放式软件包“恒星天体物理学实验模块(MESA)”及其一维恒星演化模块MESA star的功能。现在,MESA恒星对巨型行星演化建模的能力得到了提高,其适用性已扩展到低至木星质量的十分之一。天基开普勒和CoRoT任务使星震学有了显着改善,这促使我们将ADIPLS绝热脉动代码与MESA星完全耦合。当许多核以不可忽略的丰度存在时,这也更容易实现Ledoux准则的数值重铸。这影响了MESA星计算半对流和热盐混合的方式。通过核He燃烧的结束,He热脉冲的开始以及到达白矮星的冷却序列,我们展示了3-8M_⊙星的演化。我们实现了角动量和化学丰度的扩散,从而能够计算旋转星模型,并将其与早期工作进行了比较。我们引入了一种以辐射为主的包层的新处理方法,该方法可以使大质量恒星不间断地演化为核心坍塌。这样就可以生成新的超新星集合,长伽马射线爆发和成对不稳定性祖先模型。我们大幅修改了MESA star解决完全耦合的恒星结构和组成方程的方法,并展示了它如何提高MESA在多核处理器上的计算速度的可扩展性。还提供了有关状态方程,不透明度,核反应速率和大气边界条件的模块的更新。我们介绍了MESA软件开发套件,该套件打包了形成用于MESA的统一,维护和良好验证的构建环境所需的所有必需组件。我们还将重点介绍社区开发的一些工具,用于快速可视化MESA星级结果。

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