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Origin of crosscutting dissolution surfaces in magmatic plagioclase

机译:岩浆斜长石横切溶蚀面的起源

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摘要

Crosscutting dissolution surfaces (DSs) are rare features observed in magmatic plagioclase crystals. In this study, crosscutting DSs of dacitic plagioclase crystals from the Shirahama Group, Izu Peninsula, Japan, were investigated using a Nomarski differential interference contrast imaging microscope and chemical compositional data. Crosscutting DS slopes were examined by tracing digitized images. The following features of crosscutting DSs are reported for the first time: (1) traces of the crosscutting DSs showed parabolic-like shapes; (2) crosscutting DSs were found on select (adjacent or opposite) faces of the crystals suggesting a preferential dissolution of a limited area of the plagioclase; (3) projecting points were observed with directional characteristics; and (4) square or angular patterns were found in the less dissolved parts of the crystals. The formation of crosscutting features is controlled by dissolution and crystal settling into hotter magma. Process velocities depend on the physical properties of the magma, such that a description of crosscutting features can reveal valuable information about the magmatic environment and the dynamic behavior of crystals.
机译:横切溶蚀面(DSs)是岩浆斜长石晶体中观察到的罕见特征。在这项研究中,使用Nomarski微分干涉对比成像显微镜和化学成分数据研究了来自日本伊豆半岛白滨集团的斜生斜长石晶体的横切DS。通过追踪数字化图像检查横切DS斜率。首次报道了横切DS的以下特征:(1)横切DS的痕迹显示为抛物线形。 (2)在晶体的选定(相邻或相对)面上发现了横切DS,表明斜长石的有限区域优先溶解。 (3)观察到具有方向性特征的投影点; (4)在晶体溶解度较低的部分发现了方形或有角度的图案。横切特征的形成是通过溶解和晶体沉降到较热的岩浆中来控制的。过程速度取决于岩浆的物理性质,因此横切特征的描述可以揭示有关岩浆环境和晶体动力学行为的有价值的信息。

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