论文标题
分层的钙钛矿材料中的轨道订购CSVF $ _4 $
Orbital ordering in the layered perovskite material CsVF$_4$
论文作者
论文摘要
在密切相关的电子系统中,轨道自由度诱导了几种新型的物理特性。特别是,费米水平附近的轨道变性会导致自发的对称性破裂,例如FESE中的列表和几个钙钛矿系统中的轨道顺序。在这里,使用密度函数理论和Hatree-fock近似中的多型哈伯德模型系统地研究了新型的层状钙钛矿材料CSVF $ _4 $,具有$ 3D^2 $电子配置。我们的结果表明,CSVF $ _4 $应该具有磁性,并在$ ab $平面中具有G型反铁磁布置,并且沿$ C $轴沿$ C $轴的弱反铁磁交换符合实验结果。由jahn-teller失真驱动在vf $ _6 $ coctahedra中,缩短了$ c $轴,该系统显示一个有趣的电子占用率$ d_ {xy}^1(d_ {xz} d_ {yz} $ $ $ d_ {yz} $和$ d_ {xz} $ orbitals每个站点共享一个电子。我们表明,这种退化性被打破了,并且新颖的$ d_ {yz} $/$ d_ {xz} $交错的轨道模式在这里预测了第一原理和哈伯德模型计算。这种轨道订购是由与去除脱位相关的电子不稳定性驱动的,以降低能量。
In strongly correlated electronic systems, several novel physical properties are induced by the orbital degree of freedom. In particular, orbital degeneracy near the Fermi level leads to spontaneous symmetry breaking, such as the nematic state in FeSe and the orbital ordering in several perovskite systems. Here, the novel layered perovskite material CsVF$_4$, with a $3d^2$ electronic configuration, was systematically studied using density functional theory and a multiorbital Hubbard model within the Hatree-Fock approximation. Our results show that CsVF$_4$ should be magnetic, with a G-type antiferromagnetic arrangement in the $ab$ plane and weak antiferromagnetic exchange along the $c$-axis, in agreement with experimental results. Driven by the Jahn-Teller distortion in the VF$_6$ octahedra that shorten the $c$-axis, the system displays an interesting electron occupancy $d_{xy}^1(d_{xz}d_{yz})^1$ corresponding to the lower nondegenerate $d_{xy}$ orbital being half-filled and the other two degenerate $d_{yz}$ and $d_{xz}$ orbitals sharing one electron per site. We show that this degeneracy is broken and a novel $d_{yz}$/$d_{xz}$ staggered orbital pattern is here predicted by both the first-principles and Hubbard model calculations. This orbital ordering is driven by the electronic instability associated with degeneracy removal to lower the energy.