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YOUNG SUPERNOVA REMNANTS IN NONUNIFORM MEDIA

机译:非均匀介质中的年轻超新星残存

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We investigate the dynamics of young supernova remnants (SNRs) in the presence of a nonuniform external density such as might be present at the edge of a molecular cloud. Using a two-dimensional, Total Variation Diminishing, hydrodynamic code, we perform high-resolution (1024 by 2048) simulations in cylindrical symmetry of explosions in the vicinity of a smooth density transition. We improve upon previous calculations by including the inertia and kinetic energy of the stellar ejecta. The evolution is followed until the outer blast wave has swept up roughly 20 times the initial ejected mass (14.5 solar mass). We find that the presence of the density transition has important dynamical effects on the remnant during the pre-Sedov-Taylor evolution. When the remnant is smaller than the width of the density transition, the apparent SNR center shifts while maintaining a nearly circular shape. At this stage, the morphology of such a SNR would be difficult to distinguish from one expanding in a uniform medium. Once the remnant size exceeds the transition width, it expands as distinct lobes into the high- and low-density regions. The radii of these lobes, as measured from the explosion center, approach the self-similar Sedov-Taylor solution appropriate for the gas density that is local to each lobe. The nonuniform density also creates a pressure imbalance in the SNR interior that drives gas from the high-density side to the low-density side. This sets up asymmetric, nonradial flows in the remnant interior, which may be directly observable. At early stages, the nonspherical motions should serve as a better indicator of a nonuniform external density than the morphology.
机译:我们研究了在不均匀的外部密度(例如可能存在于分子云的边缘)下存在的年轻超新星残余(SNR)的动力学。使用二维总变化量递减的水动力代码,我们在平滑的密度过渡附近,以爆炸的圆柱对称性进行了高分辨率(1024 x 2048)模拟。我们通过包括恒星喷射的惯性和动能来改进以前的计算。一直跟踪到演化,直到外爆炸波扫过大约是初始喷射质量(太阳质量14.5)的20倍。我们发现密度过渡的存在对前塞多夫-泰勒进化过程中的残余物具有重要的动力学影响。当残留物小于密度过渡的宽度时,视在SNR中心会移动,同时保持接近圆形的形状。在这一阶段,很难将这种SNR的形态与在均匀介质中扩展的SNR区别开。一旦剩余大小超过过渡宽度,它就会作为不同的叶扩展到高密度和低密度区域。从爆炸中心测得的这些波瓣的半径接近适合于每个波瓣局部气体密度的自相似Sedov-Taylor解。密度不均匀还会在SNR内部产生压力不平衡,从而将气体从高密度侧驱动到低密度侧。这会在残余内部中建立不对称的非径向流,这可以直接观察到。在早期阶段,非球形运动应比形态学更好地指示外部密度不均匀。

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