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首页> 外文期刊>Physical review, B >Nature of the octahedral tilting phase transitions in perovskites: A case study of CaMnO3
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Nature of the octahedral tilting phase transitions in perovskites: A case study of CaMnO3

机译:佩罗夫斯基特八面体倾斜相转变的性质:Camno3的案例研究

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摘要

The temperature-induced antiferrodistortive (AFD) structural phase transitions in CaMnO3, a typical perovskite oxide, are studied using first-principles density functional theory calculations. These transitions are caused by tilting of the MnO6 octahedra that are related to unstable phonon modes in the high-symmetry cubic perovskite phase. Transitions due to octahedral tilting in perovskites normally are believed to fit into the standard soft-mode picture of displacive phase transitions. We calculate phonon-dispersion relations and potential-energy landscapes as functions of the unstable phonon modes and argue based on the results that the phase transitions are better described as being of order-disorder type. This means that the cubic phase emerges as a dynamical average when the system hops between local minima on the potential-energy surface. We then perform ab initio molecular dynamics simulations and find explicit evidence of the order-disorder dynamics in the system. Our conclusions are expected to be valid for other perovskite oxides, and we finally suggest how to predict the nature (displacive or order-disorder) of the AFD phase transitions in any perovskite system.
机译:使用一原子密度泛函理论计算研究CAMNO3中的温度诱导的抗乳剂变性(AFD)结构相转变,典型的钙钛矿氧化物。这些转变是由倾斜与高对称立方钙钛矿相中不稳定的声子模式相关的MnO6八面体。由于钙钛矿中的八面体倾斜导致的过渡通常被认为适合位移相变的标准软模式图片。我们将声子分散关系和潜在能量景观作为不稳定声子模式的功能,并基于相位转换更好地描述为订单障碍类型的结果来争辩。这意味着当系统跳跃在潜在 - 能量表面上的局部最小值之间时,立方相是动态平均值。然后,我们执行AB Initio分子动力学模拟,并在系统中找到明确的证据证据。我们的结论预计对其他钙钛矿氧化物有效,我们终于旨在预测AFD阶段转型中的任何钙钛矿系统的性质(流离性或秩序障碍)。

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