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首页> 外文期刊>Science Advances >Curious kinetic behavior in silica polymorphs solves seifertite puzzle in shocked meteorite
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Curious kinetic behavior in silica polymorphs solves seifertite puzzle in shocked meteorite

机译:二氧化硅多晶型物的好奇动力学行为解决了震惊陨石中的针铁矿难题

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The presence of seifertite, one of the high-pressure polymorphs of silica, in achondritic shocked meteorites has been problematic because this phase is thermodynamically stable at more than ~100 GPa, unrealistically high-pressure conditions for the shock events in the early solar system. We conducted in situ x-ray diffraction measurements at high pressure and temperatures, and found that it metastably appears down to ~11 GPa owing to the clear difference in kinetics between the metastable seifertite and stable stishovite formations. The temperature-insensitive but time-sensitive kinetics for the formation of seifertite uniquely constrains that the critical shock duration and size of the impactor on differentiated parental bodies are at least ~0.01 s and ~50 to 100 m, respectively, from the presence of seifertite.
机译:硅铁矿是硅石的一种高压多晶型物,存在于软骨质冲击陨石中,这是一个问题,因为该相在约100 GPa以上的热力学条件下是稳定的,这是早期太阳系中发生冲击事件的不切实际的高压条件。我们在高压和高温下进行了原位X射线衍射测量,发现由于亚稳的针叶岩和稳定的辉石岩层之间在动力学方面存在明显差异,因此它可以稳定地低至约11 GPa。针铁矿的形成对温度不敏感但对时间敏感的动力学唯一地限制了针铁矿存在的临界冲击持续时间和撞击物在分化的母体上的大小分别至少为〜0.01 s和〜50至100 m。 。

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