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Metastable gamet in oceanic crust at the top of the lower mantle

机译:下地幔顶部洋壳中的亚稳态配子

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As oceanic tectonic plates descend into the Earth's lower mantle, garnet (in the basaltic crust) and silicate spinel (in the underlying peridotite layer) each decompose to form silicate perovskite―the 'post-garnet' and 'post-spinel' transformations, respectively. Recent phase equilibrium studies have shown that the post-garnet transformation occurs in the shallow lower mantle in a cold slab, rather than at ~ 800 km depth as earlier studies indicated, with the implication that the subducted basaltic crust is unlikely to become buoyant enough to delaminate as it enters the lower mantle. But here we report results of a kinetic study of the post-garnet transformation, obtained from in situ X-ray observations using sintered diamond anvils, which show that the kinetics of the post-garnet transformation are significantly slower than for the post-spinel transformation. Although metastable spinel quickly breaks down at a temperature of 1,000K, we estimate that metastable garnet should survive of the order of 10 Myr even at 1,600 K. Accordingly, the expectation of where the subducted oceanic crust would be buoyant spans a much wider depth range at the top of the lower mantle, when transformation kinetics are taken into account.
机译:随着海洋构造板块下降到地球的下地幔,石榴石(在玄武岩地壳中)和硅酸盐尖晶石(在下面的橄榄岩层中)各自分解形成硅酸盐钙钛矿-分别是“石榴石后”和“尖晶石后”转变。 。最近的相平衡研究表明,石榴石后的转化发生在冷平板的下部下地幔中,而不是如早先的研究表明的那样,在约800 km的深度发生,这暗示着俯冲的玄武岩地壳不太可能浮起以致于进入下地幔时分层。但是这里我们报告了石榴石转化后动力学的研究结果,该结果是通过使用烧结金刚石砧座进行的原位X射线观察获得的,结果表明,石榴石转化后的动力学比脊柱后转化要慢得多。尽管亚稳尖晶石在1,000K的温度下会迅速分解,但我们估计,即使在1,600 K的温度下,亚稳石榴石也应能维持10 Myr的量级。因此,对俯冲的洋壳有浮力的期望跨越了更宽的深度范围考虑转化动力学时,在下地幔顶部。

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