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首页> 外文期刊>The Astrophysical journal >CONVECTIVE PROPERTIES OF ROTATING TWO-DIMENSIONAL CORE-COLLAPSE SUPERNOVA PROGENITORS
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CONVECTIVE PROPERTIES OF ROTATING TWO-DIMENSIONAL CORE-COLLAPSE SUPERNOVA PROGENITORS

机译:旋转二维核折叠超新星前体的对流性质

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摘要

We explore the effects of rotation on convective carbon, oxygen, and silicon shell burning during the late stages of evolution in a 20?M ⊙ star. Using the Modules for Experiments in Stellar Astrophysics we construct one-dimensional (1D) stellar models both with no rotation and with an initial rigid rotation of 50% of critical. At different points during the evolution, we map the 1D models into 2D and follow the multidimensional evolution using the FLASH compressible hydrodynamics code for many convective turnover times until a quasi-steady state is reached. We characterize the strength and scale of convective motions via decomposition of the momentum density into vector spherical harmonics. We find that rotation influences the total power in solenoidal modes, with a slightly larger impact for carbon and oxygen shell burning than for silicon shell burning. Including rotation in 1D stellar evolution models alters the structure of the star in a manner that has a significant impact on the character of multidimensional convection. Adding modest amounts of rotation to a stellar model that ignores rotation during the evolutionary stage, however, has little impact on the character of the resulting convection. Since the spatial scale and strength of convection present at the point of core collapse directly influence the supernova mechanism, our results suggest that rotation could play an important role in setting the stage for massive stellar explosions.
机译:我们探索了在20?M evolution星的演化后期,旋转对对流碳,氧和硅壳燃烧的影响。使用恒星天体物理学中的实验模块,我们可以构建一维(1D)恒星模型,既不旋转也不旋转,初始刚度旋转为临界值的50%。在演化过程中的不同点,我们将一维模型映射为二维模型,并使用FLASH可压缩流体力学代码进行多维对流,进行许多对流周转时间,直到达到准稳态为止。我们通过将动量密度分解为矢量球谐函数来表征对流运动的强度和尺度。我们发现旋转会影响螺线管模式下的总功率,对碳和氧壳燃烧的影响比对硅壳燃烧的影响大。在一维恒星演化模型中包括自转会以某种方式改变恒星的结构,这对多维对流的特征具有重大影响。但是,在演化阶段将适度的旋转量添加到忽略旋转的恒星模型中,对所得对流特性几乎没有影响。由于核心坍缩处存在的对流的空间尺度和强度直接影响超新星机制,因此我们的结果表明,自转可能在为大规模恒星爆炸的阶段奠定重要作用。

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