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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Numerical simulations of collective magnetic properties and magnetoresistance in 2D ferromagnetic nanoparticle arrays
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Numerical simulations of collective magnetic properties and magnetoresistance in 2D ferromagnetic nanoparticle arrays

机译:二维铁磁纳米粒子阵列中集体磁性能和磁阻的数值模拟

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摘要

Magnetic properties and magnetoresistance (MR) in 2D magnetic nanoparticle (NP) arrays are investigated by solving the Landau–Lifshitz–Gilbert equation at T = 0K. The interparticle interactions induce a decrease in the coercive field and in the MR amplitude compared with the non-interacting case, while in some cases, the variation of the remanent magnetization is found to be non-monotonic when increasing the dipolar strength. For different values of the anisotropy, these variations of the coercive field, the remanent magnetization and the MR ratio are reproduced and exhibit a scaling on the dipolar/anisotropy ratio. These results suggest that the magnetic properties of the assemblies can be described by an individual or collective behaviour depending on the balance between the magnetic anisotropy and the dipolar interactions. In the case of strongly interacting NPs, the corresponding configurations of the magnetic moments at the remanent state reveal the formation of a ferromagnetic order at moderate dipolar strength (increase in the remanent magnetization) while small ferromagnetic domains/chains coupled antiferromagnetically are obtained in the case of strongly interacting NPs (decrease in the remanent magnetization). Such domains lead to a reduction in the MR amplitude and to a deviation from the m2-law in the resistance-magnetic field [R(H)] characteristic of the non-interacting case.
机译:通过求解T = 0K时的Landau–Lifshitz–Gilbert方程,研究了二维磁性纳米颗粒(NP)阵列中的磁性和磁阻(MR)。与非交互情况相比,粒子间的交互作用会导致矫顽场和MR振幅减小,而在某些情况下,当增加偶极强度时,剩余磁化强度的变化是非单调的。对于不同的各向异性值,会复制矫顽场,剩余磁化强度和MR比的这些变化,并显示出偶极/各向异性比的缩放比例。这些结果表明,取决于磁各向异性和偶极相互作用之间的平衡,可以通过单独或集体的行为来描述组件的磁性。在强相互作用的NP的情况下,剩磁状态下的磁矩的相应配置表明在中等偶极强度下(剩余磁化强度增加)形成了铁磁有序,而在这种情况下获得了小的铁磁畴/链反铁磁耦合强相互作用的NP的数量(剩余磁化强度的降低)。这样的磁畴导致MR振幅减小,并导致非交互情况的电阻磁场[R(H)]特性中的m2律偏离。

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