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Determination of slip system in olivine based on crystallographic preferred orientation and subgrain-rotation axis : examples from Ichinomegata peridotite xenoliths, Oga peninsula, Akita prefecture

机译:基于晶体学的优选取向和亚晶粒旋转轴确定橄榄石中的滑移体系:秋田县大贺半岛一斑巨橄榄岩异岩的例子

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摘要

In this study of peridotite xenoliths from Ichinomegata volcano, Oga peninsula, NE Japan, we used electron backscattered diffraction to assess the validity of two methods of identifying the olivine slip system that operated during deformation. The xenoliths are harzburgite in composition and contain a distinct foliation and lineation defined by aligned spinel and pyroxene grains. Using the first method, the dominant slip system in olivine was estimated based on the crystallographic preferred orientation (CPO) of olivine with respect to the foliation and lineation. The second method was based on an analysis of subgrain rotation: given that intracrystalline subgrain boundaries were observed within several olivine grains, we measured the misorientation angles across these boundaries to define sets of slip planes, slip directions, and rotation axes. The olivine slip systems estimated using the two methods are essentially identical. The CPO pattern provides an important constraint on the dominant slip system that operated during deformation, whereas the analysis of subgrain rotation yields the slip system responsible for the development of individual subgrain boundaries composed of edge dislocations. The two methods are therefore complementary.
机译:在这项来自日本东北部的男鹿半岛市伊奇诺加塔火山的橄榄岩异岩的研究中,我们使用电子背散射衍射评估了两种识别在变形过程中起作用的橄榄石滑移系统的方法的有效性。异种石的成分为harzburgite,并包含由对准的尖晶石和辉石晶粒定义的明显叶状和纹路。使用第一种方法,基于橄榄石相对于叶面和线条的晶体学优选取向(CPO),估计了橄榄石中的优势滑移系统。第二种方法是基于对亚晶粒旋转的分析:鉴于在几个橄榄石晶粒内观察到了晶内亚晶粒边界,我们测量了跨这些边界的取向差角,以定义滑移面,滑移方向和旋转轴的集合。使用这两种方法估算的橄榄石滑移系统基本相同。 CPO模式对在变形过程中运行的主要滑移系统提供了重要的约束,而对亚晶粒旋转的分析则产生了负责由边缘位错组成的各个亚晶粒边界发展的滑移系统。因此,这两种方法是互补的。

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