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Study of the influence of surface anisotropy and lattice structure on the behaviour of a small magnetic cluster

机译:表面各向异性和晶格结构对小磁团簇行为的影响研究

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摘要

We have studied by Monte Carlo simulations the thermal behaviour of a small (N = 13 particles) cluster described by a Heisenberg model, including nearest-neighbour ferromagnetic interactions and radial surface anisotropy, in an applied magnetic field. We have studied three different lattice structures: hexagonal close packed, face centered cubic and icosahedral. We show that the zero-field thermal behaviour depends not only on the value of the anisotropy constant but also on the lattice structure. The behaviour in an applied field, additionally depends, on the different orientations of the field with respect to the crystal axes. According to these relative orientations, hysteresis cycles show different step-like characteristics.
机译:我们已经通过蒙特卡洛模拟研究了由Heisenberg模型描述的小(N = 13个粒子)团簇的热行为,包括在施加磁场中的近邻铁磁相互作用和径向表面各向异性。我们研究了三种不同的晶格结构:六方密堆积,面心立方和二十面体。我们表明,零场热行为不仅取决于各向异性常数的值,而且还取决于晶格结构。另外,在所施加的场中的行为取决于场相对于晶轴的不同取向。根据这些相对方向,磁滞循环表现出不同的阶梯状特征。

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