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高自旋轴子绝缘体

High spin axion insulator.

作者信息

Li Shuai, Gong Ming, Li Yu-Hang, Jiang Hua, Xie X C

机构信息

School of Physical Science and Technology, Soochow University, Suzhou, 215006, China.

Institute for Advanced Study, Soochow University, Suzhou, 215006, China.

出版信息

Nat Commun. 2024 May 18;15(1):4250. doi: 10.1038/s41467-024-48542-4.

Abstract

Axion insulators possess a quantized axion field θ = π protected by combined lattice and time-reversal symmetry, holding great potential for device applications in layertronics and quantum computing. Here, we propose a high-spin axion insulator (HSAI) defined in large spin-s representation, which maintains the same inherent symmetry but possesses a notable axion field θ = (s + 1/2)π. Such distinct axion field is confirmed independently by the direct calculation of the axion term using hybrid Wannier functions, layer-resolved Chern numbers, as well as the topological magneto-electric effect. We show that the guaranteed gapless quasi-particle excitation is absent at the boundary of the HSAI despite its integer surface Chern number, hinting an unusual quantum anomaly violating the conventional bulk-boundary correspondence. Furthermore, we ascertain that the axion field θ can be precisely tuned through an external magnetic field, enabling the manipulation of bonded transport properties. The HSAI proposed here can be experimentally verified in ultra-cold atoms by the quantized non-reciprocal conductance or topological magnetoelectric response. Our work enriches the understanding of axion insulators in condensed matter physics, paving the way for future device applications.

摘要

轴子绝缘体具有由晶格和时间反演对称性共同保护的量子化轴子场θ = π,在层子学和量子计算的器件应用中具有巨大潜力。在此,我们提出一种在大自旋 - s表示中定义的高自旋轴子绝缘体(HSAI),它保持相同的固有对称性,但具有显著的轴子场θ = (s + 1/2)π。通过使用混合万尼尔函数直接计算轴子项、层分辨陈数以及拓扑磁电效应,独立地证实了这种独特的轴子场。我们表明,尽管HSAI的表面陈数为整数,但其边界处不存在有保证的无隙准粒子激发,这暗示了一种违反传统体 - 边界对应关系的异常量子现象。此外,我们确定轴子场θ可以通过外部磁场精确调节,从而实现对键合输运性质的操控。这里提出的HSAI可以通过量化的非互易电导或拓扑磁电响应在超冷原子中进行实验验证。我们的工作丰富了对凝聚态物理中轴子绝缘体的理解,为未来的器件应用铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3a0f/11102527/a25b31aa3bc3/41467_2024_48542_Fig1_HTML.jpg

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