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首页> 外文期刊>The Astrophysical journal >GAMMA-RAY LINES FROM ASYMMETRIC SUPERNOVAE
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GAMMA-RAY LINES FROM ASYMMETRIC SUPERNOVAE

机译:不对称超新星的伽马射线线

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摘要

We present three-dimensional smoothed particle hydrodynamics simulations of supernova explosions from 100 s to 1 yr after core bounce. By extending our modeling efforts to a three-dimensional hydrodynamics treatment, we are able to investigate the effects of explosion asymmetries on mixing and γ-ray line emergence in supernovae. A series of initial explosion conditions are implemented, including jetlike and equatorial asymmetries of varying degree. For comparison, symmetric explosion models are also calculated. A series of time slices from the explosion evolution are further analyzed using a three-dimensional Monte Carlo γ-ray transport code. The emergent hard X- and γ-ray spectra are calculated as a function of both viewing angle and time, including trends in the γ-ray line profiles. We find significant differences in the velocity distribution of radioactive nickel between the symmetric and asymmetric explosion models. The effects of this spatial distribution change are reflected in the overall high-energy spectrum, as well as in the individual γ-ray line profiles.
机译:我们提出了芯弹后100 s至1年的超新星爆炸的三维平滑粒子流体动力学模拟。通过将建模工作扩展到三维流体动力学处理,我们能够研究爆炸不对称对超新星混合和γ射线线出现的影响。实施了一系列初始爆炸条件,包括不同程度的喷射状和赤道不对称性。为了进行比较,还计算了对称爆炸模型。使用三维蒙特卡洛γ射线传输码进一步分析了爆炸演化的一系列时间片。根据视角和时间(包括γ射线线轮廓的趋势)来计算出出现的硬X射线和γ射线光谱。我们发现对称和不对称爆炸模型之间放射性镍的速度分布存在显着差异。这种空间分布变化的影响反映在整个高能谱以及各个γ射线谱线中。

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