Topological Surface States in a Gyroid Acoustic Crystal

小旋翼机 拓扑(电路) 声波 曲面(拓扑) 材料科学 几何学 对称(几何) 表面状态 凝聚态物理 物理 光学 数学 复合材料 共聚物 组合数学 聚合物
作者
Yuning Guo,Matheus I. N. Rosa,Massimo Ruzzene
出处
期刊:Advanced Science [Wiley]
卷期号:10 (6) 被引量:11
标识
DOI:10.1002/advs.202205723
摘要

The acoustic properties of an acoustic crystal consisting of acoustic channels designed according to the gyroid minimal surface embedded in a 3D rigid material are investigated. The resulting gyroid acoustic crystal is characterized by a spin-1 Weyl and a charge-2 Dirac degenerate points that are enforced by its nonsymmorphic symmetry. The gyroid geometry and its symmetries produce multi-fold topological degeneracies that occur naturally without the need for ad hoc geometry designs. The non-trivial topology of the acoustic dispersion produces chiral surface states with open arcs, which manifest themselves as waves whose propagation is highly directional and remains confined to the surfaces of a 3D material. Experiments on an additively manufactured sample validate the predictions of surface arc states and produce negative refraction of waves at the interface between adjoining surfaces. The topological surface states in a gyroid acoustic crystal shed light on nontrivial bulk and edge physics in symmetry-based compact continuum materials, whose capabilities augment those observed in ad hoc designs. The continuous shape design of the considered acoustic channels and the ensuing anomalous acoustic performance suggest this class of phononic materials with semimetal-like topology as effective building blocks for acoustic liners and load-carrying structural components with sound proofing functionality.
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