论文标题

基于铜的蜂窝状NA $ _2 $ cu $ _2 $ _2 $ teo $ _6 $的电子结构,磁性和配对趋势

Electronic structure, magnetic properties and pairing tendencies of the copper-based honeycomb lattice Na$_2$Cu$_2$TeO$_6$

论文作者

Lin, Ling-Fang, Soni, Rahul, Zhang, Yang, Gao, Shang, Moreo, Adriana, Alvarez, Gonzalo, Christianson, Andrew D., Stone, Matthew B., Dagotto, Elbio

论文摘要

旋转$ 1/2 $的链条带有交替的抗铁磁和铁磁耦合,由于其自​​旋激发的拓扑特征,引起了人们的极大兴趣。在这里,使用密度功能理论和密度矩阵重归其化组方法,我们系统地研究了二聚链系统NA $ _2 $ _2 $ _2 $ _2 $ teo $ _6 $。在费米级别附近,主要状态主要由Cu $ 3D_ {X^2-Y^2} $ orbitals在非磁性阶段高度杂交,从而导致了“有效”的单一轨道低功能模型。此外,Cu $ 3D_ {x^2-y^2} $状态的带宽很小($ \ sim 0.8 $ eV),这表明电子相关性将对该系统产生强烈影响。通过引入这种电子相关性,我们发现该系统是莫特绝缘子。此外,通过计算磁性交流交互($ j_1 $,$ j_2 $和$ j_3 $),我们解释了与NA $ _2 $ _2 $ _2 $ _2 $ _2 $ _6 $中的交换交互的大小和符号,与中子实验达成协议。此外,我们为此二聚链系统构建了一个单轨哈伯德模型,其中考虑了量子波动。 AFM和FM耦合($ \ uparrow $ - $ \ downarrow $ - $ \ downarrow $ - $ \ uparrow $)沿我们的DMRG和兰开斯计算中找到,与DFT和中子结果一致。我们还计算了孔配对结合能$ΔE$,该$ $Δe$在Hubbard $ u \ sim 11 $ eV处变为负,表明初始配对趋势。最后,我们还研究了始终表现出紧密对的各种孔掺杂的情况。因此,我们相信我们对NA $ _2 $ CU $ _2 $ teo $ _6 $的结果可以为从事此二聚链系统的实验者和理论家提供指导,例如短距离磁耦合,掺杂效果和可能的配对趋势。

Spin-$1/2$ chains with alternating antiferromagnetic and ferromagnetic couplings have attracted considerable interest due to the topological character of their spin excitations. Here, using density functional theory and density matrix renormalization group methods, we have systematically studied the dimerized chain system Na$_2$Cu$_2$TeO$_6$. Near the Fermi level, the dominant states are mainly contributed by the Cu $3d_{x^2-y^2}$ orbitals highly hybridized with the O $2p$ orbitals in the nonmagnetic phase, leading to an "effective" single-orbital low-energy model. Furthermore, the bandwidth of the Cu $3d_{x^2-y^2}$ states is small ($\sim 0.8$ eV), suggesting that electronic correlations will strongly affect this system. By introducing such electronic correlations, we found this system is a Mott insulator. Moreover, by calculating the magnetic exchange interactions ($J_1$, $J_2$ and $J_3$), we explained the size and sign of the exchange interactions in Na$_2$Cu$_2$TeO$_6$, in agreement with neutron experiments. In addition, we constructed a single-orbital Hubbard model for this dimerized chain system, where the quantum fluctuations are taken into account. Both AFM and FM coupling ($\uparrow$-$\downarrow$-$\downarrow$-$\uparrow$) along the chain were found in our DMRG and Lanczos calculations, in agreement with DFT and neutron results. We also calculated the hole pairing binding energy $ΔE$ which becomes negative at Hubbard $U \sim 11$ eV, indicating incipient pairing tendencies. Finally, we also looked at various cases of hole doping that always exhibit tight pairs. Thus, we believe our results for Na$_2$Cu$_2$TeO$_6$ could provide guidance to experimentalists and theorists working on this dimerized chain system, such as short-range magnetic coupling, doping effects, and possible pairing tendencies.

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