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Curious kinetic behavior in silica polymorphs solves seifertite puzzle in shocked meteorite.


ABSTRACT: 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.

SUBMITTER: Kubo T 

PROVIDER: S-EPMC4640644 | biostudies-literature | 2015 May

REPOSITORIES: biostudies-literature

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Curious kinetic behavior in silica polymorphs solves seifertite puzzle in shocked meteorite.

Kubo Tomoaki T   Kato Takumi T   Higo Yuji Y   Funakoshi Ken-Ichi K  

Science advances 20150508 4


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 seifer  ...[more]

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