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首页> 外文期刊>Physical review. B, Condensed Matter And Materials Physics >Magnetic structure and transport properties of noncollinear LaMn_2X_2 (X = Ge,Si) systems
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Magnetic structure and transport properties of noncollinear LaMn_2X_2 (X = Ge,Si) systems

机译:非共线LaMn_2X_2(X = Ge,Si)系统的磁性结构和输运性质

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摘要

Electronic, magnetic, and transport properties of the noncollinear naturally multilayered compounds LaMn_2Ge_2 and LaMn_2Si_2 are addressed by first-principles calculations based on the density-functional theory. At low temperatures, these systems show a magnetic state with the Mn moments ordered in a conical arrangement (spin spiral) with a ferromagnetic coupling along the c axis and an in-plane antiferromagnetic coupling. The magnetic structures are studied by means of the full-potential linearized augmented-plane-wave method within both the generalized-gradient approximation and the local-density approximation. In both compounds, a conical magnetic state is obtained with energies lower than canted and collinear structures. The trends in the experimentally observed magnetic configuration when replacing Ge by Si are discussed. The origin of the experimentally observed inverse giant magnetoresistance in LaMn_2Ge_2 is traced back to the presence of many noncollinear low-energy magnetic configurations.
机译:非共线自然多层化合物LaMn_2Ge_2和LaMn_2Si_2的电子,磁和输运性质通过基于密度泛函理论的第一性原理计算得到解决。在低温下,这些系统显示出磁状态,其中Mn矩以圆锥形排列(自旋螺旋形)排列,沿着c轴具有铁磁耦合,并且存在面内反铁磁耦合。在广义梯度近似和局部密度近似中,都通过全位线性化增强平面波方法研究了磁性结构。在这两种化合物中,获得的圆锥形磁态的能量都低于倾斜和共线结构。讨论了用Si代替Ge时实验观察到的磁结构的趋势。 LaMn_2Ge_2中实验观察到的逆巨磁电阻的起源可追溯到许多非共线低能磁性构型的存在。

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