论文标题

震惊的星际气体与超新星残留IC 443相互作用的物理条件

Physical Conditions in Shocked Interstellar Gas Interacting with the Supernova Remnant IC 443

论文作者

Ritchey, Adam M., Jenkins, Edward B., Federman, Steven R., Rice, Johnathan S., Caprioli, Damiano, Wallerstein, George

论文摘要

我们介绍了对与超新星残留IC 443相互作用的物理条件进行详细研究的结果。我们的分析是基于对高分辨率远硫化物光谱的全面检查,该光谱与空间望远镜成像光谱仪在板上的两个星星望远镜上的两个星星望远镜望远镜触发了iC 443的螺旋望远镜(IC 443)。超新星残留物,而另一个(HD 254755)样品材料位于主要超新星冲击阵线的前面。我们在这两个方向上都确定了低速静态气体,并发现这些成分中的密度和温度是弥漫性原子和分子云的典型特征。在中性和单一化的原子物种朝向HD 43582的吸收曲线中观察到许多高速度成分。这些成分表现出大大增强的热压和尘土碎片耗尽的大大增强的组合。我们将这种材料解释为在重组区域中的冷却气体,即与驱动到中性气体团块的冲击下游。针对高清43582的一组电离气体成分衍生的压力低于其他震动组件的压力,这表明整个残余物的压力不均匀性。在高度离子化的物种向HD 43582的吸收曲线中看到了非常高的速度成分。

We present the results of a detailed investigation into the physical conditions in interstellar material interacting with the supernova remnant IC 443. Our analysis is based on a comprehensive examination of high-resolution far-ultraviolet spectra obtained with the Space Telescope Imaging Spectrograph onboard the Hubble Space Telescope of two stars behind IC 443. One of our targets (HD 43582) probes gas along the entire line of sight through the supernova remnant, while the other (HD 254755) samples material located ahead of the primary supernova shock front. We identify low velocity quiescent gas in both directions and find that the densities and temperatures in these components are typical of diffuse atomic and molecular clouds. Numerous high velocity components are observed in the absorption profiles of neutral and singly-ionized atomic species toward HD 43582. These components exhibit a combination of greatly enhanced thermal pressures and significantly reduced dust-grain depletions. We interpret this material as cooling gas in a recombination zone far downstream from shocks driven into neutral gas clumps. The pressures derived for a group of ionized gas components at high positive velocity toward HD 43582 are lower than those of the other shocked components, pointing to pressure inhomogeneities across the remnant. A strong very high velocity component near -620 km/s is seen in the absorption profiles of highly-ionized species toward HD 43582. The velocity of this material is consistent with the range of shock velocities implied by observations of soft thermal X-ray emission from IC 443. Moderately high-velocity gas toward HD 254755 may represent shocked material from a separate foreground supernova remnant.

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