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Monte Carlo radiation hydrodynamics:Methods, tests and application to Type Ia supernova ejecta

机译:蒙特卡罗辐射流体动力学:Ia型超新星喷射器的方法,测试和应用

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摘要

In astrophysical systems, radiation-matter interactions are important in transferring energy and momentum between the radiation field and the surrounding material. This coupling often makes it necessary to consider the role of radiation when modelling the dynamics of astrophysical fluids. During the last few years, there have been rapid developments in the use of Monte Carlo methods for numerical radiative transfer simulations. Here, we present an approach to radiation hydrodynamics that is based on coupling Monte Carlo radiative transfer techniques with finite-volume hydrodynamical methods in an operator-split manner. In particular, we adopt an indivisible packet formalism to discretize the radiation field into an ensemble of Monte Carlo packets and employ volume-based estimators to reconstruct the radiation field characteristics. In this paper the numerical tools of this method are presented and their accuracy is verified in a series of test calculations. Finally, as a practical example, we use our approach to study the influence of the radiation-matter coupling on the homologous expansion phase and the bolometric light curve of Type Ia supernova explosions.
机译:在天体系统中,辐射与物质的相互作用对于在辐射场与周围物质之间传递能量和动量非常重要。当对天体物理流体的动力学建模时,这种耦合常常需要考虑辐射的作用。在过去的几年中,蒙特卡罗方法在数值辐射传输模拟中的应用发展迅速。在这里,我们提出了一种辐射流体力学的方法,该方法基于蒙特卡洛辐射传递技术与有限体积流体力学方法的耦合,以算子拆分的方式进行。特别是,我们采用不可分割的数据包形式主义将辐射场离散为蒙特卡洛数据包的集合,并采用基于体积的估计器来重建辐射场特征。本文介绍了该方法的数值工具,并通过一系列测试计算验证了其准确性。最后,作为一个实际的例子,我们使用我们的方法来研究辐射-物质耦合对Ia型超新星爆炸的同质膨胀相和辐射热曲线的影响。

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