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Monte Carlo simulation of magnetic properties of mixed spin (3/2, 1) ferromagnetic and ferrimagnetic disordered binary alloys with amorphous structure

机译:非晶态混合自旋(3/2,1)铁磁性和亚铁磁性无序二元合金的磁性的Monte Carlo模拟

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摘要

Monte Carlo simulation is used to study the magnetic properties of mixed spin (3/2,1) disordered binary alloys on simple cubic, hexagonal and amorphous magnetic ultra-thin films with 18 x 18 x 2 atoms. To this end, at the first approximation, the exchange coupling interaction between the spins is considered as a constant value and at the second one, the Ruderman-Kittel-Kasuya-Yosida (RKKY) model is used. Effects of concentration, structure, exchange interaction, single ion-anisotropy and the film size on the magnetic properties of disordered ferromagnetic and ferrimagnetic binary alloys are investigated. Our results indicate that the spontaneous magnetization and critical temperatures of rare earth-3d transition binary alloys are affected by these parameters. It is also found that in the ferrimagnetic state, the compensation temperature (T_(com)) and the magnetic rearrangement temperature (T_R) appear for some concentrations.
机译:蒙特卡罗模拟用于研究在18 x 18 x 2原子的简单立方,六边形和非晶态磁性超薄膜上混合自旋(3 / 2,1)无序二元合金的磁性能。为此,在第一个近似中,自旋之间的交换耦合相互作用被视为一个恒定值,在第二个近似中,使用Ruderman-Kittel-Kasuya-Yosida(RKKY)模型。研究了浓度,结构,交换相互作用,单离子各向异性和膜尺寸对无序铁磁和亚铁磁二元合金磁性能的影响。我们的结果表明,稀土3d过渡二元合金的自发磁化强度和临界温度受这些参数的影响。还发现在亚铁磁状态下,补偿温度(T_(com))和磁重排温度(T_R)在某些浓度下出现。

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