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首页> 外文期刊>Physica status solidi, B. Basic research >Correlation of Microstructure and Magnetotransport Properties of Epitaxially Grown La-Ca-Mn-O_3 Thin films
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Correlation of Microstructure and Magnetotransport Properties of Epitaxially Grown La-Ca-Mn-O_3 Thin films

机译:外延生长La-Ca-Mn-O_3薄膜的微观结构与磁传输性能的相关性

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摘要

We have investigated epitaxially grown single-crystalline Ca-doped LaMnO_3 thin films using the pulsed laser deposition technique in a case study aimed to explore the possibilities buried in epitaxial stress tailoring in order to control the transport properties of CMR materials beyond the limits set by equilibrium thermodynamics. Depending on the film thickness there is an abrupt transition from pseudomorphic to epitaxial granular growth observable which is related to the epitaxial strain of the films. This is associated with microscopic stress relaxation and leads to well controllable modifications of the atomic arrangements of the Mn-O sublattice in the films. Due to the interrelation of double exchange, spin-, charge- and orbital ordering and the Jahn-Teller effect mediated coupling of the electronic system to the crystal lattice, the magnetotransport properties of the films can be modified in a controllable way.
机译:在一个案例研究中,我们研究了使用脉冲激光沉积技术外延生长的单晶掺Ca的LaMnO_3薄膜,以探索埋藏在外延应力剪裁中的可能性,以控制CMR材料的传输性能超出平衡设定的极限。热力学。根据膜的厚度,可以观察到从假晶到外延颗粒生长的突然转变,这与膜的外延应变有关。这与微观应力松弛有关,并导致对薄膜中Mn-O亚晶格原子排列的良好控制。由于双重交换,自旋,电荷和轨道有序的相互关系以及电子系统与晶格的Jahn-Teller效应介导的耦合,可以以可控的方式改变薄膜的磁传输性质。

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