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首页> 外文期刊>The Astrophysical Journal. Letters >The Evolution of Dust Opacity in Core Collapse Supernovae and the Rapid Formation of Dust in Their Ejecta
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The Evolution of Dust Opacity in Core Collapse Supernovae and the Rapid Formation of Dust in Their Ejecta

机译:核心塌陷超新星灰尘不透明度的演变及其喷射中灰尘的快速形成

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Infrared (IR) observations of core collapse supernovae (CCSNe) have been used to infer the mass of dust that has formed in their ejecta. A plot of inferred dust masses versus supernova (SN) ages shows a trend of increasing dust mass with time, spanning a few decades of observations. This trend has been interpreted as evidence for the slow and gradual formation of dust in CCSNe. Observationally, the trend exhibits a t~2 behavior, exactly what is expected from an expanding optically thick ejecta. In this case, the observed dust resides in the IR-thin “photosphere” of the ejecta, and constitutes only a fraction of the total dust mass. We therefore propose that dust formation proceeds very rapidly, condensing most available refractory elements within two years after the explosion. At early epochs, only a fraction of the dust emission escapes the ejecta accounting for the low observed dust mass. The ejecta's entire dust content is unveiled only a few decades after the explosion, with the gradual decrease in its IR opacity. Corroborating evidence for this picture includes the early depletions of refractory elements in the ejecta of SN1987A and the appearance of a silicate emission band around day 300 in SN?2004et.
机译:红外(IR)核心崩塌超新世界(CCSNE)的观察已被用于推断出在其喷射物中形成的灰尘质量。一系列推断尘群与超新星(SN)年龄的曲线表现出了随着时间的推移增加了尘埃质量的趋势,跨越几十年的观察。这种趋势被解释为CCSNE中灰尘缓慢和逐渐形成的证据。术语,趋势表现出T〜2的行为,究竟是从扩张的光学厚的喷射物中预期的。在这种情况下,观察到的灰尘存在于喷射物的IR薄的“Photosphere”中,并且仅构成总尘埃质量的一小部分。因此,我们提出灰尘形成非常迅速,在爆炸后两年内缩小最耐火元素。在早期的时期,只有一小部分灰尘发射率离喷射物占低观察到的粉尘质量。喷射物的整个粉尘含量仅在爆炸后几十年推出,其红外不透明度逐渐减少。对该图片的证据包括SN1987A的喷射器中的耐火元件的早期耗尽,以及SN 200左右的硅酸盐发射带的外观。

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