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首页> 外文期刊>Contributions to Mineralogy and Petrology >Strange attractors in plagioclase oscillatory zoning: petrological implications
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Strange attractors in plagioclase oscillatory zoning: petrological implications

机译:斜长石振荡带中的奇异吸引子:岩石学意义

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摘要

Oscillatory zoning in plagioclase crystals from different mixed lava flows cropping out on the Island of Capraia (Italy) has been investigated. An-calibrated profiles from back-scattered-electron images are used as compositional time series of oscillatory zoning. They are analyzed by a qualitative visual method that allows to appreciate at first sight the global structure of the time series and by a quantitative method to reconstruct the attractors associated to the oscillatory patterns, and to calculate the fractal dimension of attractors. Results show that attractors have fractional dimensions, indicating that series are chaotic. In addition, it is evidenced that there is a wide variation in oscillatory zoning in crystals from the same lava flow and that plagioclase populations from the different lava flows differ in the shape of frequency histograms of attractor dimension. The develdpment of oscillatory zoning is simulated by considering a chemically inhomogeneous magmatic mass governed by chaotic flow fields, coupled with chemical diffusion, in which plagioclase crystals grow according to the availability of nutrients in their neighborhoods. Results show that in such a dynamical system plagioclase crystals develop chaotic zoning patterns analogous to those observed in natural plagioclases. This approach allows us to explain the differences observed in plagioclase crystals from the same lava flow and the differences in the shape of frequency histograms of attractor dimensions in the four lava flows.
机译:在Capraia岛(意大利)上种植的不同混合熔岩流中斜长石晶体的振荡分区已得到研究。来自背向散射电子图像的经过校准的轮廓被用作振荡分区的组成时间序列。通过定性视觉方法对它们进行了分析,该方法允许乍一看了解时间序列的整体结构,并通过定量方法来重构与振荡模式相关的吸引子,并计算吸引子的分形维数。结果表明,吸引子具有分数维,表明该序列是混沌的。此外,有证据表明,来自相同熔岩流的晶体的振荡分区有很大变化,并且来自不同熔岩流的斜长石种群在吸引子维数频率直方图中的形状也不同。通过考虑由混沌流场控制的化学非均质岩浆质量以及化学扩散来模拟振荡带的形成,其中斜长石晶体根据其附近营养物的可用性而生长。结果表明,在这样的动力学系统中,斜长石晶体会形成类似于自然斜长石中观察到的混沌分区模式。这种方法使我们能够解释在相同熔岩流中斜长石晶体中观察到的差异以及在四个熔岩流中吸引子尺寸的频率直方图形状的差异。

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