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Spin-glass surface disorder on the magnetic behaviour of antiferromagnetic small particles

机译:自旋玻璃表面无序对反铁磁小颗粒磁性的影响

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We studied the magnetic properties of an antiferromagnetic small particle of Ising spins. The particle is represented by a two-dimensional array of spins, where the coupling between spins in the core is antiferromagnetic, and its surface is modelled by a shell of spins with competing interactions, simulating a spin-glass type ordering at the surface. We investigated this model by mean-field approximation and Monte Carlo simulations. The magnetic behaviour was studied as a function of the temperature and external magnetic field. Some of the experimental findings observed in real antiferromagnetic nanoparticles, like hysteresis, shifted loops and coercive field, are obtained for this model. We showed that these properties strongly depend on the degree of surface disorder. (c) 2004 Elsevier B.V. All rights reserved.
机译:我们研究了Ising自旋的反铁磁小颗粒的磁性。粒子由自旋的二维阵列表示,其中核中自旋之间的耦合是反铁磁性的,并且其表面由具有竞争性相互作用的自旋壳建模,模拟了表面的自旋玻璃类型有序。我们通过均值场近似和蒙特卡洛模拟研究了该模型。研究了磁性行为与温度和外部磁场的关系。对于该模型,可以获得在真实反铁磁纳米粒子中观察到的一些实验发现,例如磁滞,位移环和矫顽场。我们证明了这些性质在很大程度上取决于表面无序程度。 (c)2004 Elsevier B.V.保留所有权利。

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