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首页> 外文期刊>The American mineralogist >Compressibility and structural stability of two variably hydrated olivine samples (Fo97Fa3) to 34 GPa by X-ray diffraction and Raman spectroscopy
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Compressibility and structural stability of two variably hydrated olivine samples (Fo97Fa3) to 34 GPa by X-ray diffraction and Raman spectroscopy

机译:X射线衍射和拉曼光谱分析两个可变水合橄榄石样品(Fo97Fa3)到34 GPa的可压缩性和结构稳定性

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The content and transport of fluid phases such as water into the deep Earth is of great importance not only to correlate seismological models of the planet's interior with mineralogical models, but also for the understanding of the evolution of the solid Earth as well as the Earth's atmosphere. This study reports on the influence of water on the structural and physical properties of olivine, which is known to be the main constituent of the upper mantle. Two hydrous olivines of composition Fo_(97)Fa_3 with water content of 4883 parts per million by weight (ppmw) (SZ0407A) and 8000 ppmw (SZ0407B) were synthesized at 1250 °C and 12 GPa. Single-crystal X-ray diffraction was used to determine unit-cell parameters of SZ0407A and SZ0407B at pressures up to 7.1 GPa at room temperature. Synchrotron powder X-ray diffraction and Raman scattering experiments were performed on sample SZ0407A in a diamond-anvil cell to 34 GPa at room temperature. For both samples, the compressibility is the largest along the b-axis and smallest along the a-axis. Using the compression (V/V_o) vs. pressure data for sample SZ0407A to 29 GPa, in conjunction with the third-order Birch-Murnaghan equation of state, we calculate the isothermal bulk modulus and its pressure derivative as K_o = 119.2(12) GPa and K'_o = 6.6(4). Single-crystal compression data for sample SZ0407A to 7 GPa give K_o = 121.5(6) GPa and K'_o = 5.7(2); and for sample SZ0407B K_o = 122.2(12) GPa and K'_o = 6.2(4). High-pressure Raman spectra for SZ0407A up to 34 GPa show a continuous shift of all the observed bands to higher frequency with increasing pressure; there is no indication of any first-order phase transition. However, the Raman spectra indicate subtle discontinuous changes around 22 GPa, unobserved in previously reported studies on anhydrous olivines.
机译:诸如水之类的流体相的含量和向地球深处的输送,不仅对于使行星内部的地震学模型与矿物学模型相关联,而且对于理解固体地球以及地球大气的演化具有重要意义。 。这项研究报告了水对橄榄石的结构和物理特性的影响,橄榄石是上地幔的主要成分。在1250℃和12GPa下合成了两种组成为Fo_(97)Fa_3的含水橄榄石,其水含量为每百万重量份4883份(ppmw)(SZ0407A)和8000ppmw(SZ0407B)。在室温下,在最高7.1 GPa的压力下,使用单晶X射线衍射确定SZ0407A和SZ0407B的晶胞参数。在室温下,在金刚石砧座中对样品SZ0407A进行了同步加速器粉末X射线衍射和拉曼散射实验。对于这两个样品,可压缩性沿b轴最大,而沿a轴最小。使用样品SZ0407A到29 GPa的压缩(V / V_o)与压力数据,结合三阶Birch-Murnaghan状态方程,我们计算出等温体积模量及其压力导数,K_o = 119.2(12) GPa和K'_o = 6.6(4)。样品SZ0407A的单晶压缩数据为7 GPa,得出K_o = 121.5(6)GPa,K'_o = 5.7(2);对于样本SZ0407B,K_o = 122.2(12)GPa,K'_o = 6.2(4)。最高34 GPa的SZ0407A的高压拉曼光谱显示,随着压力的增加,所有观察到的谱带都不断向更高频率移动;没有任何一阶相变的迹象。然而,拉曼光谱表明在22 GPa附近有细微的不连续变化,这在先前报道的无水橄榄石研究中没有观察到。

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