论文标题

拓扑绝缘子的声学角状态,带有内置的Zeeman样田

Acoustic corner states in topological insulators with built-in Zeeman-like fields

论文作者

Huang, Xueqin, Lu, Jiuyang, Yan, Zhongbo, Yan, Mou, Deng, Weiyin, Chen, Gang, Liu, Zhengyou

论文摘要

具有拓扑角状态的高阶拓扑绝缘子(HOTIS)在拓扑物理学领域中成为一个繁荣的话题。但是,对于Z_2索引描述的经过良好探索的一阶拓扑绝缘子,Hotis几乎没有连接。但是,最近,一项提案断言,在Hotis和Z_2拓扑绝缘子之间可以建立一个重要的桥梁。当受到平面内的采地田的约束时,角落指出,Hotis的签名可以在Z_2拓扑绝缘子中诱导。例如,可以通过铁磁接近效应或磁性原子掺杂来产生这种Zeeman场,这显然涉及极大的实验性复杂性。在这里,我们表明,一种声音晶体,设计为耦合声腔的双层,它与内置的Zeeman Fields完全托管了Kane-Mele模型。我们观察到,沿着锯齿形边缘的螺旋边缘状态被覆盖,并且在空间上位于样品拐角处的角状态出现在缝隙中,证实了Zeeman场引起的效果。我们进一步证明了六角形环形样品中外角和内部角处的角状态的有趣对比特性。

The higher-order topological insulators (HOTIs), with such as the topological corner states, emerge as a thriving topic in the field of topological physics. But few connections have been found for the HOTIs with the well explored first-order topological insulators described by the Z_2 index. However, most recently, a proposal asserts that a significant bridge can be established between the HOTIs and the Z_2 topological insulators. When subject to an in-plane Zeeman field, the corner states, the signature of the HOTIs, can be induced in a Z_2 topological insulator. Such Zeeman field can be produced, for example, by the ferromagnetic proximity effect or magnetic atom doping, which obviously involves the drastically experimental complexity. Here we show that, a phononic crystal, designed as a bilayer of coupled acoustic cavities, hosts exactly the Kane-Mele model with built-in in-plane Zeeman fields. We observe that the helical edge states along the zigzag edges are gapped, and the corner states, localized spatially at the corners of the samples, appear in the gap, confirming the effect induced by the Zeeman field. We further demonstrate the intriguing contrast properties of the corner states at the outer and inner corners in a hexagonal ring-shaped sample.

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