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Dust and Molecule Formation and Processing in Supernovae and their Remnants

机译:超新星及其残余物中的灰尘和分子形成和加工

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Supernovae (SNe) produce, fragment and destroy dust, molecules and nucleosynthetic elements, and reshape and modify the ISM. I will review recent infrared observations of supernova remnants (SNRs) and SNe which show that SNe are important sites of dust and molecule formation and are major dust creators in the Universe. Detection of carbon monoxide (CO) fundamental band from the young SNR Cas A indicates that astrochemical processes in SNRs interacting with molecular clouds provide astrophysical laboratories to study evolution of the ISM returning material from dense clouds into the more diffuse medium and galactic halo. Two dozen SNRs are known to be interacting with molecular clouds using H_2 and millimeter observations. Recent Spitzer, Herschel and SOFIA observations along with ground-based observations have greatly advanced our understanding shock processing and astrochemistry of dust, H_2, high J CO, and other neutral and ionized molecules and polycyclic aromatic hydrocarbon (PAH). Ionized molecules and warm layer of molecules that are excited by UV radiation, X-rays, or cosmic rays will be described. Finally I will discuss how astrochemical processes of dust and molecules in SNRs impact the large scale structures in the ISM.
机译:超新世界(SNE)生产,片段和破坏粉尘,分子和核酸核酸元素,并重塑并改变ISM。我将审查最近的超新星残余(SNRS)和SNE的红外观察,表明SNE是灰尘和分子形成的重要遗址,是宇宙中的主要粉尘创造者。从年轻的SNR CAS a中检测来自幼体CAS的一氧化碳(CO)基波频段表明SNRS与分子云相互作用的星式化过程提供了天体物理实验室,以研究从密集云中的ISM返回材料进入更漫射介质和半乳清卤素的ism返回材料的演变。已知二十只SNRS使用H_2和毫米观察与分子云相互作用。最近的Spitzer,Herschel和Sofia观察以及地面的观测有很大程度上推进了我们的灰尘,H_2,高J CO和其他中性和电离分子和多环芳烃(PAH)的抗冲击加工和装饰性。将描述由UV辐射,X射线或宇宙射线激发的电离分子和暖分子。最后,我将讨论SNRS中的灰尘和分子的成像过程如何影响ISM中的大规模结构。

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