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首页> 外文期刊>The Astrophysical journal >THEY CAME FROM THE DEEP IN THE SUPERNOVA: THE ORIGIN OF TiC AND METAL SUBGRAINS IN PRESOLAR GRAPHITE GRAINS
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THEY CAME FROM THE DEEP IN THE SUPERNOVA: THE ORIGIN OF TiC AND METAL SUBGRAINS IN PRESOLAR GRAPHITE GRAINS

机译:它们来自超新世纪的深渊:前石墨粒中TiC和金属亚晶的起源

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摘要

A new formation scenario for TiC and Fe-Ni metal inclusions in presolar graphite grains of supernova origin is described. The mineralogy and chemistry require condensation of Fe-Ni titanides from Fe-, Ni-, and Ti-rich gaseous ejecta, subsequent carburization to make TiC and metal, and encapsulation into graphite. Titanides only condense if Si is depleted relative to heavier elements, which requires α-rich freeze-out and a deep mass cut for the supernova ejecta. This Si-poor core material must remain unmixed with other supernova zones until the titanides condense. This can be accomplished by transport of core ejecta in bipolar jets through the major expanding supernova zone ejecta. If the jets stall in regions dominated by C-rich ejecta such as the C-He zone, where graphite condenses, thermochemically favored in situ carburization of the titanides—either before or during encapsulation into condensing graphite—leads to a TiC-and-metal composite. This scenario agrees with theoretical models and observations of asymmetric core collapse in supernovae that are associated with bipolar jets loaded with iron-peak elements.
机译:描述了超新星起源的太阳前石墨晶粒中TiC和Fe-Ni金属夹杂物的新形成情况。矿物学和化学性质要求从富铁,富尼和钛的气态喷射物中冷凝出铁镍钛酸盐,随后进行渗碳以制造TiC和金属,并封装成石墨。仅当Si相对于较重的元素耗尽时,钛化物才会凝结,这需要富含α的沉淀物和超新星喷射的深质量削减。贫硅的核心材料必须保持与其他超新星区域的混合状态,直到钛化物冷凝为止。这可以通过将双极射流中的核心射流通过主要的膨胀超新星带射流进行传输来实现。如果射流在富C射流为主的区域(例如C-He区)中失速,石墨会在那里凝结,那么在封装成凝结石墨之前或之中,热化学方法会有利于钛酸酯的原位渗碳,从而导致TiC和金属综合。这种情况与理论模型和超新星中不对称堆芯坍塌的观察结果相符,后者与装有铁峰元素的双极射流有关。

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