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High-pressure Raman spectroscopic studies of FeS2 pyrite

机译:FeS2黄铁矿的高压拉曼光谱研究

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We report micro-Raman spectroscopic studies of FeS2 pyrite in the diamond-anvil cell under hydrostatic and non-hydrostatic conditions to 55 GPa at room temperature. Four out of five Raman-active modes are resolved with helium as a pressure-transmitting medium to highest pressures. The fifth mode, Tg(2) [377 cm–1], is weak and unresolved lying ~2 cm–1 from the intense Ag mode [379 cm–1] at 1 bar. We observe an increase in the separation of the Eg [344 cm–1] and Tg(1) [350 cm–1] modes under compression. All observed frequencies increase continuously with increasing pressure showing no evidence for a structural phase transition in accord with both X-ray diffraction and shock-wave studies. The Ag and Tg(1) modes gain significantly in intensity relative to the Eg mode with increasing pressure probably resulting from Raman resonance effects. The Tg(3) mode [430 cm–1] broadens unusually compared to the other pyrite modes with pressure. The Raman data are consistent with a contraction of the S–S and Fe–S bonds under pressure. The main effect of non-hydrostatic conditions on the Raman modes is a strong pressure-induced broadening; the pressure-dependence of the frequencies and relative intensities are not affected within the error of the measurements.
机译:我们在静压和非静压 条件下,在室温下将 金刚石-砧室中FeS 2 黄铁矿的显微拉曼光谱研究进行了研究温度。五分之四的拉曼活性 模式都将氦作为压力传输介质 解析为最高压力。第五种模式T g (2)[377 cm –1 ], 较弱且无法分辨,约为2 cm –1 从1巴下的[ A g 模式[379 cm –1 ]开始。我们观察到 E g [344 cm –1 ]和T g (1 )[350 cm –1 ] 模式在压缩下。所有观察到的频率随着压力的增加而连续地增加 ,这表明没有证据表明与X射线衍射和冲击波 都一致的结构 。 A g 和T g (1)模式的强度 相对于E g 模式显着增加拉曼共振效应可能导致 产生压力。与其他带有压力的黄铁矿模式相比,T g (3)模式[430 cm –1 ] 异常地扩展。 sup>拉曼数据与在压力下S–S 和Fe–S键的收缩一致。非静水 条件对拉曼模式的主要影响是强烈的压力诱导展宽; 频率和相对强度的压力依赖性 在测量误差范围内不受影响。

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