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Critical temperature studies of the anisotropic bilayer and multilayer Heisenberg ferromagnets in Pair Approximation

机译:成对近似的各向异性双层和多层海森堡铁磁体的临界温度研究

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摘要

The Pair Approximation method is applied to studies of the bilayer and multilayer magnetic systems with simple cubic structure. The method allows to take into account quantum effects related to non-Ising couplings. The paper adopts the anisotropic Heisenberg model for spin S=12 and considers phase transition temperatures as a function of the strength of exchange integrals in line with the role of intra- and interplanar anisotropic interactions in the onset of low-dimensional magnetism. The compensation effect for the Curie temperature is found for asymmetric interactions within the neighbouring planes of the bilayer system. The paper predicts the saturation of the Curie temperature for strong interplanar interactions. However, such an effect for the multilayer system occurs only when the interplanar interactions are purely of isotropic character.
机译:对近似法用于研究具有简单立方结构的双层和多层磁性系统。该方法允许考虑与非Ising耦合有关的量子效应。本文采用自旋S = 12的各向异性Heisenberg模型,并考虑了相变温度是交换积分强度的函数,这与平面内和平面间各向异性相互作用在低维磁学发作中的作用相一致。对于双层系统的相邻平面内的不对称相互作用,发现了居里温度的补偿效果。本文预测了居里温度在强平面间相互作用中的饱和度。但是,仅当面间相互作用纯粹具有各向同性的特性时,才会对多层系统产生这种影响。

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