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首页> 外文期刊>The Astrophysical journal >DUST SPUTTERING BY REVERSE SHOCKS IN SUPERNOVA REMNANTS
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DUST SPUTTERING BY REVERSE SHOCKS IN SUPERNOVA REMNANTS

机译:超新星残渣中反向冲击引起的粉尘溅射

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We consider the sputtering of dust grains, believed to be formed in cooling supernovae ejecta, under the influence of reverse shocks. In the regime of self-similar evolution of reverse shocks, we can follow the evolution of ejecta density and temperature analytically as a function of time in different parts of the ejecta, and calculate the sputtering rate of graphite and silicate grains embedded in the ejecta as they encounter the reverse shock. Through analytic (one-dimensional) calculations, we find that a fraction of the dust mass (1%-20% for silicates and graphites) can be sputtered by reverse shocks, the fraction varying with the grain size distribution and the steepness of the density profile of the ejecta mass. It is expected that many more grains will be sputtered in the region between the forward and reverse shocks, so that our analytical results provide a lower limit to the fraction of dust mass destroyed.
机译:我们考虑了在逆向冲击的影响下喷溅出的尘埃颗粒,据信这是在冷却的超新星喷射中形成的。在反向冲击的自相似演化过程中,我们可以分析出射流不同部分的射流密度和温度随时间的变化,并计算出嵌入射流的石墨和硅酸盐晶粒的溅射速率,他们遇到反向冲击。通过分析(一维)计算,我们发现,粉尘质量的一部分(对于硅酸盐和石墨而言为1%-20%)可以通过反向冲击来溅射,该部分随粒度分布和密度的陡度而变化。喷射物质的轮廓。可以预料,在正向和反向冲击之间的区域会溅射出更多的颗粒,因此我们的分析结果为所破坏的粉尘质量分数提供了一个下限。

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