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Anisotropic nodal loop in NiB2 monolayer with nonsymmorphic configuration

机译:各向异性节点循环NiB2单层nonsymmorphic配置

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摘要

Two-dimensional (2D) materials featuring a nodal-loop (NL) state have been drawing considerable attention in condensed matter physics and materials science. Owing to their structural polymorphism, recent high-profile metal-boride films have great advantages and the potential to realize a NL. Herein, a 2D NiB2 monolayer with an anisotropic NL nature is proposed and investigated using first-principles calculations. We show that the NiB2 monolayer has excellent thermal dynamics stability, suggesting the possibility of its synthesis in experiments. Remarkably, the NL with a considerable Fermi velocity is demonstrated to be protected by nonsymmorphic glide mirror symmetry, instead of the widely known horizontal mirror symmetry. Accompanied by the proper preservation of the NL, strain engineering can not only regulate the anisotropy of the NL but also give rise to a self-doping phenomenon characterized by effective modulation of the carrier type and concentration. Moreover, this NL state is robust against the correlation effect. These findings pave the way for exploring nonsymmorphic-symmetry-enabled NL nature in 2D metal-borides.
机译:二维(2 d)材料为特色nodal-loop (NL)状态图在凝聚态相当大的关注物理和材料科学。结构多态性,最近的高调metal-boride和电影有很大的优势潜在的实现问。单层各向异性问自然是提出并使用采用基于调查计算。优秀的热动力学稳定性,建议其合成实验的可能性。值得注意的是,相当大的费米的问速度是保护了nonsymmorphic滑动镜面对称,而不是众所周知的水平镜面对称。伴随着适当的保存的问,应变工程不仅可以调节各向异性的问,但也引起self-doping现象的特征是有效的调制载波的类型和浓度。此外,这种问状态是强劲的反对相关效果。为探索nonsymmorphic-symmetry-enabled问在2 d metal-borides性质。

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