论文标题

椭圆形:扁平星空的戒指爆炸

Ellipsars: Ring-like explosions from flattened stars

论文作者

DuPont, Marcus, MacFadyen, Andrew, Zrake, Jonathan

论文摘要

产生天文瞬变的恒星灾难长期以来一直被建模为点状爆炸或类似喷射的发动机,该发动机在球形对称恒星的中心点燃。但是,观察到许多恒星,或者是从理论上讲的,不是准确地说是球体对称的,而是具有类似于扁平球体的几何形状略有扁平的几何形状。在这里,我们介绍了轴对称的二维流体动力学模拟,对在具有一系列底漆范围的非球形大型恒星中心引发的点状爆炸动力学。我们将这些爆炸的非球星称为“椭圆形”,指的是在二维轴对称情况下其祖细胞的ISO密度轮廓的椭圆形。我们发现椭圆形能够加速相对论弹出的范围,这可能导致生产天文瞬变,包括低亮度GRB,相对论超新星和快速的蓝色光学瞬变(FBOTS。)

The stellar cataclysms producing astronomical transients have long been modeled as either a point-like explosion or jet-like engine ignited at the center of a spherically symmetric star. However, many stars are observed, or are expected on theoretical grounds, not to be precisely spherically symmetric, but rather to have a slightly flattened geometry similar to that of an oblate spheroid. Here we present axisymmetric two-dimensional hydrodynamical simulations of the dynamics of point-like explosions initiated at the center of an aspherical massive star with a range of oblateness. We refer to these exploding aspherical stars as "ellipsars" in reference to the elliptical shape of the iso-density contours of their progenitors in the two-dimensional axisymmetric case. We find that ellipsars are capable of accelerating expanding rings of relativistic ejecta which may lead to the production of astronomical transients including low-luminosity GRBs, relativistic supernovae, and Fast Blue Optical Transients (FBOTs.)

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