Realization of non-Hermitian Hopf bundle matter

Author:

Kim YungORCID,Park Hee ChulORCID,Kyung MinwookORCID,Lee KyungminORCID,Ryu Jung-WanORCID,You Oubo,Zhang ShuangORCID,Min BumkiORCID,Park Moon JipORCID

Abstract

AbstractNon-trivial linking invariant encodes robust information of topological matter. It has been recently shown that the linking and winding of complex eigenenergy strings can classify one-dimensional non-Hermitian topological matter. However, in higher dimensions, bundles of linked strings can emerge such that every string is mutually linked with all the other strings. To the best of our knowledge, a non-Hermitian Hopf bundle has not been experimentally clarified. Here, we attempt to explore the non-Hermitian Hopf bundle by visualizing the global linking structure of spinor strings in the momentum space of a two-dimensional electric circuit. By exploiting the flexibility of reconfigurable couplings between circuit nodes, we study the non-Hermitian topological phase transition by exploring the intricate structure of the Hopf bundle. Furthermore, we find that the higher-order skin effect in real space is accompanied by the linking of spinor strings in momentum space, revealing bulk-boundary correspondence between the two domains.

Funder

Advanced Meta-Materials (CAMM) funded by Korea Government (MSIP) as Global Frontier Project

National Research Foundation of Korea

Institute for Basic Science in the Republic of Korea through the project IBS-R024-D1.

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. PT -symmetric non-Hermitian Hopf metal;Physical Review Research;2024-03-08

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