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首页> 外文期刊>JETP Letters >Evolution of Raman and Mossbauer spectra at high pressures up to 75 GPa and a phase transition in CaSnO3 perovskite
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Evolution of Raman and Mossbauer spectra at high pressures up to 75 GPa and a phase transition in CaSnO3 perovskite

机译:高达75 GPa的高压下拉曼光谱和Mossbauer光谱的演变以及钙钛矿型CaSnO3的相变

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摘要

Raman and Mossbauer spectra from Sn-119 nuclei in CaSnO3 perovskite have been studied at high pressures up to 75 GPa. A linear increase in the frequency of the main Raman modes and a monotonic decrease in the isomer shift in Mossbauer spectra in the pressure range of 0-40 GPa are established. It is shown that the pressure-induced increase in Raman frequencies can be associated with the variation of the angle between the Sn-O-Sn bonds in chains of oxygen octahedra SnO6 along the c axis. The sharp variation of the parameters of the Raman and Mossbauer spectra is observed in the pressure region of 40-55 GPa, indicating the structural phase transformations, which can be associated with the transition into the post-perovskite state. Raman spectra of CaSnO3 samples with the ilmenite structure have been obtained for the first time.
机译:已经在高达75 GPa的高压下研究了CaSnO3钙钛矿中Sn-119核的拉曼光谱和Mossbauer光谱。在0-40 GPa的压力范围内,建立了主要拉曼模式频率的线性增加和Mossbauer光谱中异构体位移的单调减少。结果表明,压力引起的拉曼频率增加与氧八面体SnO6链沿c轴的Sn-O-Sn键之间的角度变化有关。在40-55 GPa的压力范围内观察到拉曼光谱和Mossbauer光谱参数的急剧变化,这表明结构相变可能与过渡到钙钛矿后状态有关。首次获得具有钛铁矿结构的CaSnO3样品的拉曼光谱。

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