论文标题
在碱金属质量一维铁化合物Na $ _2 $ fese $ _2 $
Prediction of exotic magnetic states in the alkali metal quasi-one-dimensional iron selenide compound Na$_2$FeSe$_2$
论文作者
论文摘要
提出了用于准二维碱金属铁硒化合物Na $ _2 $ FESE $ _2 $的磁性和电子相图。该材料的新颖性是铁的价为fe $^{2+} $,与大多数其他具有价fe $^{3+} $的铁链化合物相反。使用第一原理技术,我们开发了一个三轨紧密结合模型,该模型在费米级附近重现了{\ it Ab Inlio}频带结构。包括Hubbard和Hund耦合,并通过密度矩阵重新归一化组和Lanczos方法研究模型,我们构建了基态相图。一个强大的区域,块状态$ \ uparrow \ uparrow \ downarrow \ downarrow \ uparrow \ uparrow \ uparrow \ downarrow \ downarrow \ downarrow $稳定下来。铁梯子中的模拟状态使用2 $ \ times $ 2的铁磁块,到目前为止已经建立了良好的,但是在链中尚未在实际材料中观察到块磁性。该相图还包含一个大型交错旋转顺序$ \ uparrow \ downarrow \ uparrow \ uparrow \ downarrow \ uparrow \ uparrow \ downarrow \ uparrow \ uparrow $,以非常大的Hubbard排斥。在交错过渡区域的块上,新型相位通过两种状态的混合物稳定:一种不均匀的轨道选择性电荷密度波,带有异国情调的自旋构型$ \ uparrow \ uparrow \ uparrow \ uparrow \ uparrow \ downarrow \ uparrow \ uparrow \ uparrow \ uparrow \ uparrow \ downarrow \ downarrow \ downarrow \ downarrow \ ustarrow \ ustarrow \ ustarrow \ downarrow \ downarrow $。我们对Na $ _2 $ fese $ _2 $的预测可能会指导水晶种植者和中子散射实验者在一维铁乙酰化链材料中实现块状态。
The magnetic and electronic phase diagram of a model for the quasi-one-dimensional alkali metal iron selenide compound Na$_2$FeSe$_2$ is presented. The novelty of this material is that the valence of iron is Fe$^{2+}$ contrary to most other iron-chain compounds with valence Fe$^{3+}$. Using first-principles techniques, we developed a three-orbital tight-binding model that reproduces the {\it ab initio} band structure near the Fermi level. Including Hubbard and Hund couplings and studying the model via the density matrix renormalization group and Lanczos methods, we constructed the ground state phase diagram. A robust region where the block state $\uparrow \uparrow \downarrow \downarrow \uparrow \uparrow \downarrow \downarrow$ is stabilized was unveiled. The analog state in iron ladders, employing 2$\times$2 ferromagnetic blocks, is by now well-established, but in chains a block magnetic order has not been observed yet in real materials. The phase diagram also contains a large region of canonical staggered spin order $\uparrow \downarrow \uparrow \downarrow \uparrow \downarrow \uparrow$ at very large Hubbard repulsion. At the block to staggered transition region, a novel phase is stabilized with a mixture of both states: an inhomogeneous orbital-selective charge density wave with the exotic spin configuration $\uparrow \uparrow \downarrow \uparrow \downarrow \downarrow \uparrow \downarrow$. Our predictions for Na$_2$FeSe$_2$ may guide crystal growers and neutron scattering experimentalists towards the realization of block states in one-dimensional iron-selenide chain materials.