TRANSITION TEMPERATURE DEPENDENCE ON ANISOTROPY IN THE Ј1-Ј2-Јc-Јp HEISENBERG MODEL WITH APPLICATION TO 122-TYPE OF IRON PNICTIDES

M. Adamovic, M. Pantić
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Abstract

Recently there has been a considerable interest in studying iron-based superconductors called pnictides. The aim of this paper is to give a contribution to better understanding of magnetic properties of the 122 class of iron pnictides. We use anisotropic J1-J2-Jc-Jp Heisenberg model. The method of spin Green’s functions in the Tyablikov’s random phase approximation (RPA) decoupling scheme is used to determine the transition temperature. Based on the obtained expression for the transition temperature, we study its dependence on the spin anisotropy. Furthermore, we compare our model results with the experimentally available data for the transition temperature. In addition, we test our model predictions of the transition temperature using the exchange interaction values from other articles. Results presented here should give additional contribution to understanding the magnetic properties of the 122 class of iron-based superconductors.
转变温度对各向异性的依赖性Ј1-Ј2-Јc-Јp海森堡模型与122型铁粒子的应用
最近,人们对研究铁基超导体产生了相当大的兴趣。本文的目的是为更好地理解122类铁化合物的磁性能做出贡献。我们使用各向异性的J1-J2-Jc-Jp海森堡模型。采用Tyablikov随机相位近似(RPA)解耦方案中的自旋格林函数方法确定相变温度。根据得到的转变温度表达式,我们研究了其与自旋各向异性的关系。此外,我们还将模型结果与实验数据进行了比较。此外,我们使用其他文章中的交换相互作用值来测试我们的模型对转变温度的预测。本文提出的结果将为理解122类铁基超导体的磁性提供额外的贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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