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Ornstein-Zernike correlations and magnetic ordering in nanostructures

机译:纳米结构中的Ornstein-Zernike相关性和磁有序

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摘要

In this paper we propose a Heisenberg variational approach to study pseudo-critical phenomena on ferromagnetic nanostructures. We combine a two-spin cluster 3-dimensional Heisenberg Hamiltonian with Orstein-Zernike correlations and consider several geometries and crystalline lattices to explore the relationship among these factors and the effective number of nearest neighbors defined in several kind of nanometric structures. With this method we examine the size at which the pseudo-critical temperature of a magnetic nanoparticle reaches its bulk value. Our results shed light on the nanoscopic-microscopic limit, evidencing in particular that when one dimension is very small, independently of how big the other dimensions become, it is not possible for the structure to reach the bulk-like behavior. The results of our model are in good agreement with experimental data and other available analytical models.
机译:在本文中,我们提出了一种海森堡变分方法来研究铁磁纳米结构上的伪临界现象。我们将两旋转簇3维Heisenberg哈密顿量与Orstein-Zernike相关性结合起来,并考虑了几种几何形状和晶格,以探讨这些因素与在几种纳米结构中定义的最近邻的有效数目之间的关系。通过这种方法,我们检查了磁性纳米粒子的伪临界温度达到其体积值的大小。我们的结果揭示了纳米显微镜的极限,特别是当一个维度非常小时,无论其他维度变得多大,该结构都不可能达到块状行为。我们模型的结果与实验数据和其他可用的分析模型非常吻合。

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