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首页> 外文期刊>Physica status solidi, B. Basic research >Effects of an external magnetic field on a mixed spin-3/2 and spin-5/2 Ising ferrimagnet: A Monte Carlo study
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Effects of an external magnetic field on a mixed spin-3/2 and spin-5/2 Ising ferrimagnet: A Monte Carlo study

机译:外部磁场对自旋3/2和自旋5/2伊辛铁氧体混合磁体的影响:蒙特卡洛研究

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摘要

The magnetic properties of a ferrimagnetic mixed spin-3/2 and spin-5/2 Ising model with two crystal fields, in a longitudinal magnetic field, are studied by Monte Carlo simulations. The role of the different interactions in the Hamiltonian is explored. We investigate the thermal variations of the total magnetization and present phase diagrams. Depending on the region of the parameter space, we find some interesting phenomena such as compensation temperatures, and discontinuities in the magnetizations. We find that when an external field is present, the discontinuities are due to a simultaneous reversal of the spins of the sublattices. They signal the change between two different antiferromagnetic orderings, and are basically due to a competition between the different interactions in the Hamiltonian. We plot the dependence of the temperature at which the new phase occurs, for the different parameters in the Hamiltonian. Our results differ radically from earlier results obtained by other authors based on mean field theories. We find compensation temperatures at some particular combinations of parameters. Mean field theory predicts a wide range of parameters where the system presents even several compensation temperatures; in most of these regions we found none. In contrast with the mean field analysis that only looks at the total magnetizations, our study includes an analysis of the behavior of the sublattice magnetizations.
机译:通过蒙特卡罗模拟研究了在纵向磁场中具有两个晶体场的亚铁磁自旋3/2和自旋5/2混合伊辛模型的磁性能。探索了不同相互作用在哈密顿量中的作用。我们研究了总磁化强度的热变化并给出了相图。根据参数空间的区域,我们发现一些有趣的现象,例如补偿温度和磁化强度的不连续性。我们发现,当存在外部场时,不连续性是由于亚晶格自旋的同时反转所致。它们表示两种不同反铁磁顺序之间的变化,并且基本上是由于哈密顿量中不同相互作用之间的竞争。对于哈密顿量中的不同参数,我们绘制了新相出现时温度的依赖性。我们的结果与其他作者基于平均场论的早期研究结果完全不同。我们发现在某些特定参数组合下的补偿温度。平均场理论可以预测各种各样的参数,其中系统甚至可以提供几个补偿温度。在这些地区的大多数地区,我们都找不到。与仅查看总磁化强度的平均场分析相反,我们的研究包括对亚晶格磁化强度行为的分析。

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