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LaMnO3 中 Jahn-Teller 畸变和轨道有序的起源。

Origin of Jahn-Teller distortion and orbital order in LaMnO3.

机构信息

Institut für Festkörperforschung and Institute for Advanced Simulation, Forschungszentrum Jülich, 52425 Jülich, Germany.

出版信息

Phys Rev Lett. 2010 Feb 26;104(8):086402. doi: 10.1103/PhysRevLett.104.086402. Epub 2010 Feb 22.

Abstract

The origin of the cooperative Jahn-Teller distortion and orbital order in LaMnO3 is central to the physics of the manganites. The question is complicated by the simultaneous presence of tetragonal and GdFeO3-type distortions and the strong Hund's rule coupling between e{g} and t{2g} electrons. To clarify the situation we calculate the transition temperature for the Kugel-Khomskii superexchange mechanism by using the local density approximation+dynamical mean-field method, and disentangle the effects of superexchange from those of lattice distortions. We find that superexchange alone would yield T{KK} approximately 650 K. The tetragonal and GdFeO3-type distortions, however, reduce T{KK} to approximately 550 K. Thus electron-phonon coupling is essential to explain the persistence of local Jahn-Teller distortions to greater than or approximately 1150 K and to reproduce the occupied orbital deduced from neutron scattering.

摘要

LaMnO3 中协同 Jahn-Teller 畸变和轨道有序的起源是锰氧化物物理的核心问题。由于同时存在四方相和 GdFeO3 型畸变以及 e{g} 和 t{2g} 电子之间强烈的 Hund 规则耦合,问题变得复杂。为了澄清这种情况,我们使用局域密度近似+动力学平均场方法计算了 Kugel-Khomskii 超交换机制的转变温度,并将超交换的影响与晶格畸变的影响分离开来。我们发现,仅超交换就会使 T{KK}约为 650 K。然而,四方相和 GdFeO3 型畸变将 T{KK}降低至约 550 K。因此,电子-声子耦合对于解释局部 Jahn-Teller 畸变持续存在于大于或约 1150 K 以及重现从中子散射推断出的占据轨道至关重要。

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