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Elasticity of single-crystal superhydrous phase B at simultaneous high pressure-temperature conditions

机译:高压高温条件下单晶超水相B的弹性

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We investigated the combined effect of pressure and temperature on the elasticity of single-crystal superhydrous phase B (Shy-B) using Brillouin scattering and X-ray diffraction up to 12GPa and 700K. Using the obtained elasticity, we modeled the anisotropy of Shy-B along slab geotherms, showing that Shy-B has a low anisotropy and cannot be the major cause of the observed anisotropy in the region. Modeled velocities of Shy-B show that Shy-B will be shown as positive velocity anomalies at the bottom transition zone. Once Shy-B is transported to the topmost lower mantle, it will exhibit a seismic signature of lower velocities than topmost lower mantle. We speculate that an accumulation of hydrous phases, such as Shy-B, at the topmost lower mantle with a weight percentage of similar to 17-26% in the peridotite layer as subduction progresses could help explain the observed 2-3% low shear velocity anomalies in the region.
机译:我们使用布里渊散射和高达12GPa和700K的X射线衍射研究了压力和温度对单晶超水相B(Shy-B)弹性的综合影响。使用获得的弹性,我们对沿着板状地热的Shy-B各向异性进行了建模,表明Shy-B具有较低的各向异性,并且不能成为该区域观测到的各向异性的主要原因。 Shy-B的模型速度表明,Shy-B将在底部过渡带显示为正速度异常。一旦将Shy-B运送到最下部的地幔上,它将显示出比最下部的地幔更低的速度的地震信号。我们推测,随着俯冲的进行,水相(如Shy-B)在最下层地幔中的堆积,其重量百分比与橄榄岩层中的17-26%相似,这可能有助于解释观察到的2-3%的低剪切速度该区域的异常。

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