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Superspin glass state in a diluted nanoparticle system stabilized by interparticle interactions mediated by an antiferromagnetic matrix

机译:在稀释的纳米颗粒体系中通过由反铁磁基质介导的颗粒间相互作用稳定的稀释纳米颗粒系统中的超键玻璃状态

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摘要

In nanoparticle systems consisting of two magnetic materials (bi-magnetic nanoparticles or nanoparticles embedded in a magnetic matrix), there is a constantly growing interest in the investigation of the interplay between interparticle interactions and the nanoparticle-matrix interface exchange coupling, because of its enormous impact on a number of technological applications. The understanding of the mechanisms of such interplay is a great challenge, as it would allow controlling equilibrium and non-equilibrium magnetization dynamics of exchange coupled nanoparticles systems and finely tuning their anisotropy. Here, we provide evidence that this interplay leads to a collective superspin glass (SSG) behavior in a system of diluted ferromagnetic. (FM) nanoparticles embedded in an antiferromagnetic (AFM) matrix (5% volume fraction of Co particles in Mn film matrix). We have developed a novel mesoscopic model to study the influence of interparticle interaction on the exchange bias (EB) and the dynamical behavior of assemblies of FM nanoparticles embedded in a granular AFM matrix. Our mesoscopic model is based on reducing the amount of simulated spins to the minimum number necessary to describe the magnetic structure of the system and introducing the adequate exchange parameters between the different spins. The model replicates remarkably well the observed static and dynamical SSG properties as well as the EB behavior. In addition, the proposed model well explains the role of the significant Co/Mn alloying and of the granularity of the matrix in mediating interparticle interactions through exchange and dipole-dipole coupling between the uncompensated moments of its grains and the exchange interaction at the Co/Mn interface.
机译:在由两个磁性材料(嵌入磁性基质中的双磁性纳米粒子或纳米颗粒)组成的纳米粒子系统中,由于其巨大的情况影响许多技术应用。对这种相互作用的机制的理解是一个很大的挑战,因为它可以允许控制交换耦合纳米粒子系统的平衡和非平衡磁化动态并精细调整它们各向异性。在这里,我们提供了证据表明这种相互作用导致稀释的铁磁系统中的集体超牌玻璃(SSG)行为。 (FM)纳米颗粒嵌入反铁磁性(AFM)基质中(Mn膜基质中的CO颗粒的5%体积分数)。我们开发了一种新的介绍模型,用于研究颗粒间偏置(EB)对交换偏置(EB)的影响以及嵌入粒状AFM基质中的FM纳米粒子组件的动态行为。我们的介观模型基于将模拟旋转的量减少到描述系统磁性结构所需的最小数量,并在不同的旋转之间引入适当的交换参数。该模型显着良好地复制了观察到的静态和动态SSG属性以及EB行为。此外,所提出的模型很好地解释了显着的Co / Mn合金化和基质的粒度在通过交换和偶极子 - 偶极子偶联在其谷物的未补偿的时刻和CO / CO /的交换相互作用之间的颗粒间相互作用中的作用和基质的作用。 MN接口。

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