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首页> 外文期刊>Journal of Petrology >Serpentine Mineral Replacements of Natural Olivine and their Seismic Implications: Oceanic Lizardite versus Subduction-Related Antigorite
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Serpentine Mineral Replacements of Natural Olivine and their Seismic Implications: Oceanic Lizardite versus Subduction-Related Antigorite

机译:天然橄榄石的蛇纹石矿物替代及其地震意义:海洋蜥蜴石与俯冲相关的蛇纹石

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We report on microstructural data obtained by optical microscopy and transmission electron microscopy concerning the crystallographic relationships of serpentine minerals with their host olivine in two contrasting situations. In the first case, mesh-textured lizardite (liz) is developed in a standard 60% serpentinized oceanic harzburgite from the Oman ophiolite where olivine converts to columnar lizardite. The joined columns are perpendicular to the basal plane (001)liz, corresponding to the pseudofibres observed optically. The plane (001)liz is locally parallel to the narrow boundary ol–liz; thus column orientations register the interface of serpentinization. The ol–liz relationships are not strictly topotactic, but reflect preferred cracking orientations in olivine, parallel to (010)ol. In the second case, antigorite (atg) develops in a rare sample of antigorite schist in a kimberlite from Moses Rock (Colorado Plateau), representative of a suprasubduction-zone mantle wedge. High-resolution transmission electron microscopy (HRTEM) images along [010]atg show domains of very regular modulation with a 43·5 Å wavelength (m = 17, where m is the number of silicate tetrahedra along the wave), with few defects, indicative of HP–HT antigorite, and also heavily kinked regions as fingerprints of strong tectonic shear. TEM imaging and electron diffraction patterns reveal two topotactic relationships between antigorite and olivine: [100]atg//[010]ol and atg//ol; the planes in contact are (001)atg//(100)ol and (001)atg//(010)ol, respectively. The [010]atg//[001]ol and antigorite lamellae are parallel to the forsterite b-axis. In both cases, the topography of olivine–serpentine interfaces is controlled by open fluid pathways along microcracks oriented according to the anisotropy of the olivine aggregate. In the cases studied, the serpentine aggregate exhibits a preferred orientation inherited from that of the peridotite. These results have some relevance to the seismic anisotropy of serpentinized mantle. Anisotropy of propagation of seismic waves as a result of the olivine fabric is maintained and reinforced with the development of lizardite. Conversely, the development of antigorite produces a trench-parallel fast S-wave polarization and an anisotropy that is lowered at low degrees of serpentinization and then increased with increasing serpentinization.
机译:我们报告了通过光学显微镜和透射电子显微镜获得的有关蛇纹石矿物与它们的宿主橄榄石在两种对比情况下的晶体学关系的显微结构数据。在第一种情况下,网状结构的蜥蜴石(liz)是由阿曼蛇绿岩中一种标准的60%蛇纹石化的海洋哈氏石开发而成的,橄榄石转变为柱状蜥蜴石。连接的柱垂直于基面(001) liz ,对应于光学观察到的伪纤维。平面(001) liz 局部平行于窄边界ol–liz;因此,列方向记录了蛇形化的界面。 ol-liz关系并不是严格的全能关系,而是反映了橄榄石中与(010) ol 平行的首选开裂方向。在第二种情况下,在一个超俯冲带地幔楔的代表下,在Moses Rock(科罗拉多高原)的金伯利岩中,一种罕见的蛇纹岩片岩样品中发育了蛇纹岩(atg)。沿[010] atg 的高分辨率透射电子显微镜(HRTEM)图像显示了具有43·5Å波长(m = 17,其中m是沿硅酸盐的四面体硅酸盐的数目)的非常规则的调制域。波形),几乎没有缺陷,表明HP-HT反蛇纹岩,也有明显的扭结区域,是强构造剪切的指纹。 TEM成像和电子衍射图显示了蛇纹石和橄榄石之间的两个全位关系:[100] atg // [010] ol atg // ol ;接触的平面是(001) atg //(100) ol 和(001) atg //(010) ol 。 [010] atg // [001] ol 和反蛇纹石薄片平行于镁橄榄石的b轴。在这两种情况下,橄榄石-蛇纹石界面的地形都受到沿着微裂缝的开放流体路径的控制,这些裂缝根据橄榄石聚集体的各向异性而定向。在所研究的情况下,蛇纹石聚集体表现出从橄榄岩继承的优选取向。这些结果与蛇形化地幔的地震各向异性有关。橄榄石构造导致的地震波传播各向异性得以保持,并随着蜥蜴石的发展而增强。相反,蛇纹石的发展产生了与沟槽平行的快速S波极化和各向异性,该各向异性在低蛇纹化度时降低,然后随着蛇纹化度的增加而增加。

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