轨道间不对称跳变在卡戈梅晶格和火成晶格上产生平带

IF 5.4 1区 物理与天体物理 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY npj Quantum Materials Pub Date : 2024-09-30 DOI:10.1038/s41535-024-00685-9
Keyu Zeng, Ziqiang Wang
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引用次数: 0

摘要

平带是相关物理学和拓扑物理学的有趣平台。目前已开发出多种利用晶格几何创建扁平带的方法,但在多轨道材料中研究轨道对称性是一个新的重点领域。在此,我们介绍一种基于位点对称性的方法,用于在卡戈米晶格和火成晶格上产生多轨道二维和三维平带。作为概念上的进步,单轨道平带被证明起源于孤立分子图案的互特征态。我们进一步发展了针对在位点对称性下发生不同转化的多个轨道的互特征态方法,从反对称轨道间哈密顿中推导出轨道间跳跃产生的平带,并引入了平带波函数的群论描述。在斯莱特-科斯特形式主义中,现实材料中多轨道平带的实现是可能的。我们的发现为探索新型相关和拓扑量子态的平带电子结构提供了新方向。
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Interorbital antisymmetric hopping generated flat bands on kagome and pyrochlore Lattices

Flat bands are intriguing platforms for correlated and topological physics. Various methods have been developed to create flat bands utilizing lattice geometry, but the investigation of orbital symmetry in multiorbital materials is a new area of focus. Here, we introduce a site symmetry-based approach to emerging multiorbital 2D and 3D flat bands on the kagome and pyrochlore lattices. As a conceptual advance, the one-orbital flat bands are shown to originate as mutual eigenstates of isolated molecular motifs. Further developing the mutual eigenstate method for multiple orbitals transforming differently under the site symmetries, we derive interorbital hopping generated flat bands from the antisymmetric interorbital Hamiltonian and introduce group-theoretic descriptions of the flat band wavefunctions. Realizations of multiorbital flat bands in realistic materials are shown to be possible in the Slater-Koster formalism. Our findings provide new directions for exploring flat-band electronic structures for novel correlated and topological quantum states.

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来源期刊
npj Quantum Materials
npj Quantum Materials Materials Science-Electronic, Optical and Magnetic Materials
CiteScore
10.60
自引率
3.50%
发文量
107
审稿时长
6 weeks
期刊介绍: npj Quantum Materials is an open access journal that publishes works that significantly advance the understanding of quantum materials, including their fundamental properties, fabrication and applications.
期刊最新文献
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