杂质在金刚石链中的平带态

IF 5.4 1区 物理与天体物理 Q1 PHYSICS, MULTIDISCIPLINARY Communications Physics Pub Date : 2024-11-28 DOI:10.1038/s42005-024-01886-1
A. M. Marques, D. Viedma, V. Ahufinger, R. G. Dias
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引用次数: 0

摘要

具有无色散能带的平带(FB)系统由于其紧凑的局域态(cls)而引起了人们的极大兴趣。然而,关于局部杂质如何影响重叠类化合物的物理性质的详细描述仍然缺失。在这里,我们研究了一个具有有限磁通量的钻石链,它具有非正交cls的间隙中谱FB,并开发了一个将算子投射到这种非正交基上的框架。这一框架适用于开放钻石链的情况下,在中间链斑块有小的局部杂质,并导出了受这些杂质影响的FB状态的解析表达式。对于对角线无序状态下的顶部和底部相同的杂质,我们展示了杂质状态如何根据其空间扩展经历平均无序,从而增强了对无序的鲁棒性。对于单一杂质,发现了一个具有半整数圈数的奇特拓扑相,它在开放边界条件下与单一的隙内边缘态相联系。数值模拟验证了分析预测。一般来说,平带状态可以写成局域状态,当存在时,可以通过在重叠区域放置杂质来偶联。作者建立了一个解析框架来推导具有磁通的金刚石链中的杂质态,并发现了这些态的奇特行为,其特征为半整数圈数。
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Impurity flat band states in the diamond chain
Flat band (FB) systems, featuring dispersionless energy bands, have garnered significant interest due to their compact localized states (CLSs). However, a detailed account on how local impurities affect the physical properties of overlapping CLSs is still missing. Here we study a diamond chain with a finite magnetic flux per plaquette that exhibits a gapped midspectrum FB with non-orthogonal CLSs, and develop a framework for projecting operators onto such non-orthogonal bases. This framework is applied to the case of an open diamond chain with small local impurities in the midchain plaquette, and analytical expressions are derived for FB states influenced by these impurities. For equal impurities in top and bottom sites under diagonal disorder, we show how the impurity states experience an averaged disorder dependent on their spatial extension, leading to enhanced robustness against disorder. For a single impurity, an exotic topological phase with a half-integer winding number is discovered, which is linked to a single in-gap edge state under open boundary conditions. Numerical simulations validate the analytical predictions. Flat bands states can be written, in general, as localized states that can couple by placing impurities at the overlapping regions, when present. The authors develop an analytic framework to derive impurity states in a diamond chain with magnetic flux and find an exotic behavior of these states characterized by a half-integer winding number.
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来源期刊
Communications Physics
Communications Physics Physics and Astronomy-General Physics and Astronomy
CiteScore
8.40
自引率
3.60%
发文量
276
审稿时长
13 weeks
期刊介绍: Communications Physics is an open access journal from Nature Research publishing high-quality research, reviews and commentary in all areas of the physical sciences. Research papers published by the journal represent significant advances bringing new insight to a specialized area of research in physics. We also aim to provide a community forum for issues of importance to all physicists, regardless of sub-discipline. The scope of the journal covers all areas of experimental, applied, fundamental, and interdisciplinary physical sciences. Primary research published in Communications Physics includes novel experimental results, new techniques or computational methods that may influence the work of others in the sub-discipline. We also consider submissions from adjacent research fields where the central advance of the study is of interest to physicists, for example material sciences, physical chemistry and technologies.
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