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二氧化硅在斯石英 - 氯化钙型结构相界处的强度和弹性。

Strength and elasticity of SiO2 across the stishovite-CaCl2-type structural phase boundary.

作者信息

Shieh Sean R, Duffy Thomas S, Li Baosheng

机构信息

Department of Geosciences, Princeton University, New Jersey 08544, USA.

出版信息

Phys Rev Lett. 2002 Dec 16;89(25):255507. doi: 10.1103/PhysRevLett.89.255507. Epub 2002 Dec 3.

Abstract

Radial x-ray diffraction experiments were conducted under nonhydrostatic compression on SiO2 to 60 GPa in a diamond anvil cell. This ratio of differential stress to shear modulus t/G is 0.019(3)-0.037(5) at P=15-60 GPa. The ratio for octahedrally coordinated stishovite is lower by a factor of about 2 than observed in four-coordinated silicates. Using a theoretical model for the shear modulus, the differential stress of stishovite is found to be 4.5(1.5) GPa below 40 GPa and to decrease sharply as the stishovite-CaCl2-type phase transition boundary is approached. Inversion of measured lattice strains provides direct experimental evidence for softening of C11-C12.

摘要

在金刚石对顶砧装置中对二氧化硅进行了非静水压力下至60吉帕斯卡的径向X射线衍射实验。在15 - 60吉帕斯卡的压力下,这种差应力与剪切模量的比值t/G为0.019(3)-0.037(5)。八面体配位的斯石英的该比值比在四面体配位的硅酸盐中观察到的值低约2倍。使用剪切模量的理论模型,发现斯石英的差应力在40吉帕斯卡以下为4.5(1.5)吉帕斯卡,并且随着接近斯石英 - 氯化钙型相变边界而急剧下降。对测量的晶格应变进行反演为C11 - C12的软化提供了直接的实验证据。

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