Zhou Qiuyan, Wu Jien, Pu Zhenhang, Lu Jiuyang, Huang Xueqin, Deng Weiyin, Ke Manzhu, Liu Zhengyou
Key Laboratory of Artificial Micro- and Nanostructures of Ministry of Education and School of Physics and Technology, Wuhan University, Wuhan, 430072, China.
School of Physics and Optoelectronics, South China University of Technology, Guangzhou, Guangdong, 510640, China.
Nat Commun. 2023 Jul 29;14(1):4569. doi: 10.1038/s41467-023-40236-7.
Exceptional points and skin effect, as the two distinct hallmark features unique to the non-Hermitian physics, have each attracted enormous interests. Recent theoretical works reveal that the topologically nontrivial exceptional points can guarantee the non-Hermitian skin effect, which is geometry-dependent, relating these two unique phenomena. However, such novel relation remains to be confirmed by experiments. Here, we realize a non-Hermitian phononic crystal with exceptional points, which exhibits the geometry-dependent skin effect. The exceptional points connected by the bulk Fermi arcs, and the skin effects with the geometry dependence, are evidenced in simulations and experiments. Our work, building an experimental bridge between the exceptional points and skin effect and uncovering the unconventional geometry-dependent skin effect, expands a horizon in non-Hermitian physics.
例外点和趋肤效应作为非厄米物理学独有的两个不同的标志性特征,各自都引起了极大的兴趣。最近的理论研究表明,拓扑非平凡的例外点能够保证与几何相关的非厄米趋肤效应,从而将这两种独特现象联系起来。然而,这种新颖的关系仍有待实验证实。在此,我们实现了一种具有例外点的非厄米声子晶体,它表现出与几何相关的趋肤效应。通过模拟和实验证实了由体态费米弧连接的例外点以及具有几何依赖性的趋肤效应。我们的工作在例外点和趋肤效应之间搭建了一座实验桥梁,并揭示了非常规的与几何相关的趋肤效应,拓展了非厄米物理学的视野。