首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Seismic Visibility of Eclogite in the Earth's Upper Mantle-Implications From High Pressure-Temperature Single-Crystal Elastic Properties of Omphacite
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Seismic Visibility of Eclogite in the Earth's Upper Mantle-Implications From High Pressure-Temperature Single-Crystal Elastic Properties of Omphacite

机译:Emlogite在地幔的地震可见性来自Omphacite的高压 - 温度单晶弹性性能的影响

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Identifying and locating the geochemical and geophysical heterogeneities in the Earth's interior is one of the most important and challenging tasks for the deep Earth scientists. Subducted oceanic crust metamorphizes into the dense eclogite in the upper mantle and is considered as a major cause of geochemical and geophysical heterogeneities in the deep Earth. In order to detect eclogitic materials inside the Earth, precise measurements of the high pressure-temperature single-crystal elasticity of major minerals in eclogite are thus exceedingly important. Omphacite, a Na,Al-bearing clinopyroxene, constitutes up to 75 vol% of eclogite. In the present study, we performed the first high pressure-temperature single-crystal elasticity measurements of omphacite using Brillouin spectroscopy. Utilizing the finite-strain approach, we obtained the following thermoelastic parameters for omphacite: K-S0' = 4.5(1), G(0)' = 1.53(5), partial differential K-S0/ partial differential T = -0.029(5) GPa/K, partial differential G(0)/ partial differential T = -0.013(5) GPa/K, with K-S0 = 123(3) GPa, G(0) = 74(2) GPa, and rho(0) = 3.34(1) g/cm(3). We found that the seismic velocities of undeformed eclogite are similar to pyrolite at the depths of 200-300 and 410-500 km, thus eclogite is seismically invisible at these depths. Combined with the lattice-preferred orientations of the omphacite in naturally deformed eclogites, we also modeled seismic anisotropy of eclogite at various pressure-temperature conditions. A 10 km thick subducted eclogitic crust can result in similar to 0.2 s shear wave splitting in the Earth's upper mantle.
机译:识别和定位地球内部的地球化学和地球物理非均质性是地球深部科学家最重要和最具挑战性的任务之一。俯冲洋壳在上地幔中变质为致密榴辉岩,被认为是地球深部地球化学和地球物理非均质性的主要原因。为了探测地球内部的榴辉岩物质,精确测量榴辉岩中主要矿物的高压-温度单晶弹性非常重要。绿辉石是一种含钠、铝的单斜辉石,占榴辉岩的75%。在本研究中,我们首次使用布里渊光谱法对绿辉石进行了高压温度单晶弹性测量。利用有限应变方法,我们获得了绿辉石的以下热弹性参数:K-S0'=4.5(1),G(0)'=1.53(5),偏微分K-S0/偏微分T=-0.029(5)GPa/K,偏微分G(0)/偏微分T=-0.013(5)GPa/K,其中K-S0=123(3)GPa,G(0)=74(2)GPa,rho(0)=3.34(1)G/cm(3)。我们发现,未变形榴辉岩在200-300和410-500km深度的地震速度与辉岩相似,因此榴辉岩在这些深度的地震不可见。结合天然变形榴辉岩中绿辉石的晶格择优取向,我们还模拟了不同压力-温度条件下榴辉岩的地震各向异性。10 km厚的俯冲榴辉岩地壳可导致类似于地球上地幔0.2 s剪切波分裂。

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