Knížek K, Novák P, Jirák Z
J Phys Condens Matter. 2021 Mar 8;33(15):155502. doi: 10.1088/1361-648X/abdb13.
We have studied the origin of magnetic interaction in ɛ-FeO by ab-initio electronic structure calculations. The exchange integrals of the Heisenberg Hamiltonian have been calculated using the methods based on the density functional theory (DFT) employing generalized gradient approximation (GGA) with orbital dependent potential extension for 3d electrons of Fe (GGA + U method). The calculations confirm the ground antiferromagnetic (AFM) state with two Fe sublattices oriented up (Fe2 and Fe3) and two Fe sublattices oriented down (Fe1 and Fe4). The calculated exchange integrals, including also the intra-sublattice ones, are all of AFM type. Their strength weighted by the number of neighbors is larger between the Fe sublattices with opposite spins than between the sublattices with equal spin directions. The notable exception is a strong exchange integral between the neighboring tetrahedrally-coordinated sites within the Fe4 sublattice, which effectively decreases the molecular field imposed on Fe4 sites by neighboring sites of other sublattices, namely the antiparallelly oriented Fe2 and Fe3. For this reason, the ordered magnetic moment of Fe4 exhibits the fastest decrease with increasing temperature among the sublattices, leading to an uncompensated AFM arrangement in ɛ-FeO. Considering the competition of the inter- and intra-sublattice exchange integrals and applying symmetry arguments, we infer that the collinear AFM ground state of ɛ-FeO is prone to an intrinsic canting within the sublattices, retaining at the same time the magnetic group symmetry Pna'2'.
我们通过从头算电子结构计算研究了ɛ-FeO中磁相互作用的起源。使用基于密度泛函理论(DFT)的方法计算了海森堡哈密顿量的交换积分,该方法采用广义梯度近似(GGA)并对Fe的3d电子采用轨道依赖势扩展(GGA+U方法)。计算结果证实了基态反铁磁(AFM)态,其中两个Fe子晶格向上取向(Fe2和Fe3),两个Fe子晶格向下取向(Fe1和Fe4)。计算得到的交换积分,包括子晶格内的交换积分,均为AFM类型。由邻居数量加权的它们的强度在自旋相反的Fe子晶格之间比在自旋方向相同的子晶格之间更大。一个显著的例外是Fe4子晶格内相邻四面体配位位点之间的强交换积分,这有效地降低了其他子晶格的相邻位点(即反平行取向的Fe2和Fe3)施加在Fe4位点上的分子场。因此,Fe4的有序磁矩在各子晶格中随温度升高下降得最快,导致ɛ-FeO中出现未补偿的AFM排列。考虑到子晶格间和子晶格内交换积分的竞争并应用对称性论证,我们推断ɛ-FeO的共线AFM基态易于在子晶格内发生固有倾斜,同时保持磁群对称性Pna'2'。