论文标题
比较II-Plateau超新星光曲线的基于力矩和蒙特卡洛的辐射传输模型
Comparing Moment-Based and Monte Carlo Methods of Radiation Transport Modeling for Type II-Plateau Supernova Light Curves
论文作者
论文摘要
来自核心偏转超新星的时间依赖性电磁特征是冲击沉积和放射性辐射通过恒星喷射的详细运输的结果。由于基础辐射过程的复杂性,因此进行了相当大的近似值,以简化辐射传输问题的关键方面。我们在II-Plateau Supernovae型的一维建模中进行了基于力矩的辐射流体动力法和蒙特卡洛辐射传输代码Sedona的系统比较。基于从模块中为恒星天体物理学(MESA)仪器实验产生的爆炸模型,我们在建模的光曲线和射流结构的热演化中发现了出色的协议,从而确认了两种辐射传输模型方法的保真度。塞多纳(Sedona)蒙特卡洛(Monte Carlo)方案直接计算出的辐射力矩也验证了基于力矩方案的准确性。我们发现,不透明度表的粗分辨率和Stella中的数值近似对所得的横晶光曲线具有微不足道的影响,使其成为光学光曲线建模的特定任务的有效工具。
Time-dependent electromagnetic signatures from core-collapse supernovae are the result of detailed transport of the shock-deposited and radioactively-powered radiation through the stellar ejecta. Due to the complexity of the underlying radiative processes, considerable approximations are made to simplify key aspects of the radiation transport problem. We present a systematic comparison of the moment-based radiation hydrodynamical code STELLA and the Monte Carlo radiation transport code Sedona in the 1D modeling of Type II-Plateau supernovae. Based on explosion models generated from the Modules for Experiments in Stellar Astrophysics (MESA) instrument, we find remarkable agreements in the modeled light curves and the ejecta structure thermal evolution, affirming the fidelity of both radiation transport modeling approaches. The radiative moments computed directly by the Monte Carlo scheme in Sedona also verify the accuracy of the moment-based scheme. We find that the coarse resolutions of the opacity tables and the numerical approximations in STELLA have insignificant impact on the resulting bolometric light curves, making it an efficient tool for the specific task of optical light curve modeling.