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Dust in Supernovae and Supernova Remnants II: Processing and Survival

机译:Supernovae和超新星残留II中的灰尘:加工和生存

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Observations have recently shown that supernovae are efficient dust factories, as predicted for a long time by theoretical models. The rapid evolution of their stellar progenitors combined with their efficiency in precipitating refractory elements from the gas phase into dust grains make supernovae the major potential suppliers of dust in the early Universe, where more conventional sources like Asymptotic Giant Branch (AGB) stars did not have time to evolve. However, dust yields inferred from observations of young supernovae or derived from models do not reflect the net amount of supernova-condensed dust able to be expelled from the remnants and reach the interstellar medium. The cavity where the dust is formed and initially resides is crossed by the high velocity reverse shock which is generated by the pressure of the circumstellar material shocked by the expanding supernova blast wave. Depending on grain composition and initial size, processing by the reverse shock may lead to substantial dust erosion and even complete destruction. The goal of this review is to present the state of the art about processing and survival of dust inside supernova remnants, in terms of theoretical modelling and comparison to observations.
机译:最近观察结果表明,超新星是高效的灰尘工厂,如理性模型预测了很长一段时间。它们的恒星祖细胞的快速演变与它们在气相中沉淀到尘颗粒中的耐火元素的效率使超端成为早期宇宙中的尘埃的主要潜在供应商,在那里更常规的源泉(AgB)星星(AGB)星星等更传统的来源。没有时间进化。然而,从年轻超胃的观察或源自模型的观察结果推断的粉尘产量不反映能够从残余物排出并到达星际介质的超新月凝聚粉​​尘的净量。形成灰尘并最初驻留的腔的腔通过高速逆震,通过通过扩张的超新加坡爆发波震动的外形材料的压力产生。根据纹理组成和初始尺寸,通过反向冲击的加工可能导致大量粉尘侵蚀甚至完全破坏。本综述的目标是在理论建模和观察结果方面展示关于超新星残余物内灰尘的处理和存活的最新状态。

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