LaMnO3赝赝O相和菱形R相的轨道相关性。

IF 8.1 1区 物理与天体物理 Q1 PHYSICS, MULTIDISCIPLINARY
Physical review letters Pub Date : 2005-05-06 Epub Date: 2005-05-05 DOI:10.1103/PhysRevLett.94.177203
Xiangyun Qiu, Th Proffen, J F Mitchell, S J L Billinge
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引用次数: 130

摘要

在高温(300-1150 K)下,研究了LaMnO3在拟圆相和菱形相中的局部和中间结构,收集了中子粉末衍射数据,并进行了Rietveld和高实空间分辨率原子对分布函数的组合分析。在750k左右的Jahn-Teller跃迁的性质被证实是轨道有序到无序的。在高温正交(O)相和菱形(R)相中,MnO6八面体局部仍然完全扭曲。更重要的是,中间结构表明存在直径约为16 A(约为4 MnO6八面体)的局部有序团簇,这意味着强近邻JT反铁畸变耦合。这些团簇在JT转变温度以上持续存在,甚至进入高温R相。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Orbital correlations in the pseudocubic O and rhombohedral R phases of LaMnO3.

The local and intermediate structure of stoichiometric LaMnO3 has been studied in the pseudocubic and rhombohedral phases at high temperatures (300-1150 K). Neutron powder diffraction data were collected and a combined Rietveld and high real space resolution atomic pair distribution function analysis was carried out. The nature of the Jahn-Teller (JT) transition around 750 K is confirmed to be orbital order to disorder. In the high-temperature orthorhombic (O) and rhombohedral (R) phases, the MnO6 octahedra are still fully distorted locally. More importantly, the intermediate structure suggests the presence of local ordered clusters of diameter approximately 16 A ( approximately 4 MnO6 octahedra) implying strong nearest-neighbor JT antiferrodistortive coupling. These clusters persist well above the JT transition temperature even into the high-temperature R phase.

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来源期刊
Physical review letters
Physical review letters 物理-物理:综合
CiteScore
16.50
自引率
7.00%
发文量
2673
审稿时长
2.2 months
期刊介绍: Physical review letters(PRL)covers the full range of applied, fundamental, and interdisciplinary physics research topics: General physics, including statistical and quantum mechanics and quantum information Gravitation, astrophysics, and cosmology Elementary particles and fields Nuclear physics Atomic, molecular, and optical physics Nonlinear dynamics, fluid dynamics, and classical optics Plasma and beam physics Condensed matter and materials physics Polymers, soft matter, biological, climate and interdisciplinary physics, including networks
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