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首页> 外文期刊>Physical review >Monte Carlo Study Of The Influence Of Antiferromagnetic Exchange Interactions On The Phase Transitions Of Ferromagnetic Ni-mn-x Alloys (x=in,sn,sb)
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Monte Carlo Study Of The Influence Of Antiferromagnetic Exchange Interactions On The Phase Transitions Of Ferromagnetic Ni-mn-x Alloys (x=in,sn,sb)

机译:反铁磁交换相互作用对铁磁Ni-mn-x合金(x = in,sn,sb)的相变影响的蒙特卡洛研究

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摘要

On the basis of Monte Carlo simulations using the Potts model Hamiltonian, we investigate the complex temperature dependence of magnetization of ferromagnetic Ni-Mn-X (X=In,Sn,Sb) Heusler alloys, in which part of the Mn atoms, which occupy the X sites, interacts antiferromagnetically with the Mn atoms on the Mn sublattice. It is shown that this antiferromagnetic exchange is responsible for metamagnetic behavior and a series of magnetic phase transitions in the Heusler alloys. For an optimal choice of parameters of the model Hamiltonian, which have partially been obtained from ab initio calculations, we are able to describe the physics associated with the coupled martensitic-magnetic phase transition. The simulations lead to a qualitative agreement with the experimental magnetization curves and their dependence on temperature and composition.
机译:在使用Potts模型哈密顿量的蒙特卡罗模拟的基础上,我们研究了铁磁Ni-Mn-X(X = In,Sn,Sb)Heusler合金的磁化强度的复杂温度依赖性,其中一部分Mn原子占据X位与Mn亚晶格上的Mn原子反铁磁性相互作用。结果表明,这种反铁磁交换是造成Heusler合金中亚磁行为和一系列磁相变的原因。对于部分从头算得到的汉密尔顿模型参数的最佳选择,我们能够描述与马氏体-磁耦合相变有关的物理现象。仿真结果与实验磁化曲线及其对温度和成分的依赖关系定性一致。

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