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Various half-metallic nodal loops in organic Cr2N6C3 monolayers

机译:各种half-metallic节点有机的循环Cr2N6C3单层膜

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Topological nodal-line semimetals, as a type of exotic quantum electronic state, have drawn considerable research interest recently. In this work, we propose a new two-dimensional covalent-organic Cr monolayer (ML) material, which has a combined honeycomb and effective Kagome lattice and has various half-metallic nodal loops (HMNLs). First-principles calculations show that the C ML is dynamically and thermally stable and has an out-of-plane ferromagnetic order. Remarkably, various nodal loops, including types I-III, are found coexisting in the material, all of which are rare half-metallic states. The obtained HMNLs, simultaneously possessing the merits of spintronics and semimetals, are robust against spin-orbit coupling and biaxial strain. A topological phase transition, characterized by loop-winding indexes, can be induced in the ML by applying uniaxial strain. Tight-binding model calculations show that the obtained HMNLs originate primarily from the band inversion between Cr d orbitals, accommodated on the honeycomb and Kagome sublattices, respectively. The various predicted HMNLs and topological behaviors mean that the Cr MLs have promisingly versatile applications in future low-power-consuming spintronics and electronics.
机译:拓扑节点线半金属,作为一个类型的奇异的量子状态,引起了相当大的最近的研究兴趣。工作中,我们提出一种新的二维的covalent-organic Cr单层(ML)材料,结合蜂窝,有效戈薇晶格half-metallic也各式各样节点循环(HMNLs)。计算表明,C毫升是动态的耐热和出平面铁磁秩序。循环,包括类型》,被发现共存的材料,都是罕见的half-metallic状态。同时拥有的优点自旋电子学和半金属,强劲的反对在手性耦合和双轴应变。拓扑相变特征loop-winding索引,可以诱导毫升应用单轴应变。计算表明,HMNLs获得产生主要来自乐队反演Cr d轨道之间,适应蜂窝和戈薇质子。各种预测HMNLs和拓扑行为意味着Cr MLs充满希望地通用的应用程序在未来low-power-consuming自旋电子学和电子产品。

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