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Mictomagnetic, ferromagnetic, and antiferromagnetic transitions in La(FexAl1–x)13 intermetallic compounds

机译:La(FexAl1-x)13金属间化合物中的磁磁,铁磁和反铁磁跃迁

摘要

Cubic La(FexAl1–x)13 intermetallic compounds can be stabilized with iron concentration x between 0.46 and 0.92 in the NaZn13-type structure (D23) with Fm3c (Oh6) space-group symmetry. Here the Fe-Fe coordination number can increase up to 12. At low x values, a mictomagnetic regime occurs with distinct cusps in the ac susceptibility. With the increase of the iron concentration, a soft ferromagnetic phase is found which at lower temperatures shows anisotropy effects related to reentrant mictomagnetic behavior. Finally, for x>0.86, antiferromagnetic order appears along with a sharp metamagnetic transition in external fields of a few teslas. The saturation magnetic moment increases linearly with x from 1.4μB/Fe to 2.1μB/Fe throughout the ferromagnetic and antiferromagnetic regime. The breakdown of long-range ferromagnetic order at high x values can be explained by modifications of the iron moment and their coupling at a large Fe-Fe coordination number. However, with application of a magnetic field, the ferromagnetic state can be fully recovered. The room-temperature resistivity decreases with increasing x from 200 to 160 μΩ cm. The low-temperature slope dρ/dT is related to the magnetic order, being negative in the antiferromagnetic state and positive in the ferromagnetic state. The metamagnetic transition causes a decrease of the resistivity of about 20% and a sign change in dρ/dT. This behavior is discussed in terms of the two-current model. The thermal expansion exhibits a strong Invar character and is described by a combined band and local-moment model which allows calculations of corresponding magnetovolume coupling constants. The metamagnetic transition causes a large magnetic striction.
机译:在具有Fm3c(Oh6)空间群对称性的NaZn13型结构(D23)中,可以用铁浓度x在0.46至0.92之间稳定立方La(FexAl1-x)13金属间化合物。在这里,Fe-Fe的配位数可以增加到12。在低x值下,会发生微磁态,其磁化率具有明显的尖点。随着铁浓度的增加,发现了软铁磁相,该铁磁相在较低温度下显示出与折返微磁行为有关的各向异性效应。最后,对于x> 0.86,反铁磁有序出现,并且在几个特斯拉的外场中出现了明显的亚磁跃迁。在整个铁磁和反铁磁状态下,饱和磁矩随x线性增加,从1.4μB/ Fe增大到2.1μB/ Fe。高x值时远距离铁磁有序的分解可以通过铁力矩的修改及其在较大的Fe-Fe配位数下的耦合来解释。然而,通过施加磁场,铁磁状态可以被完全恢复。室温电阻率随着x从200增大到160μΩcm而减小。低温斜率dρ/ dT与磁阶有关,在反铁磁状态下为负,在铁磁状态下为正。亚磁跃迁导致电阻率下降约20%,并且dρ/ dT发生符号变化。此行为将根据双电流模型进行讨论。热膨胀表现出很强的因瓦特性,并由能带和局部磁矩的组合模型来描述,该模型允许计算相应的磁卵管耦合常数。亚磁跃迁引起大的磁束收缩。

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