论文标题

对称性的三维狄拉克语音晶体

Symmetry-enforced three-dimensional Dirac phononic crystals

论文作者

Cai, Xiangxi, Ye, Liping, Qiu, Chunyin, Xiao, Meng, Yu, Rui, Ke, Manzhu, Liu, Zhengyou

论文摘要

狄拉克半学是在四个频段之间具有离散线性交叉点(称为狄拉克点)的材料,是拓扑上不同阶段的关键状态。这种无间隙的拓扑状态是通过带回变的机制来实现的,在这种机制中,可以通过扰动不改变系统的对称性来对狄拉克点进行成对消灭。在这里,我们报告了对使用非晶格三维音调晶体完全由晶体对称性实现的狄​​拉克点的实验性观察。有趣的是,我们的狄拉克语音晶体具有四个螺旋拓扑表面状态,其中相反的螺旋度的表面状态沿着某些动量线无处间隙,这是我们进一步的表面测量所证实的。新颖的狄拉克系统可能会释放研究难以捉摸的(伪)相对论物理学的新机会,并为声学应用提供了独特的原型平台。

Dirac semimetals, the materials featured with discrete linearly crossing points (called Dirac points) between four bands, are critical states of topologically distinct phases. Such gapless topological states have been accomplished by a band-inversion mechanism, in which the Dirac points can be annihilated pairwise by perturbations without changing the symmetry of the system. Here, we report an experimental observation of Dirac points that are enforced completely by the crystal symmetry, using a nonsymmorphic three-dimensional phononic crystal. Intriguingly, our Dirac phononic crystal hosts four spiral topological surface states, in which the surface states of opposite helicities intersect gaplessly along certain momentum lines, as confirmed by our further surface measurements. The novel Dirac system may release new opportunities for studying the elusive (pseudo)relativistic physics, and also offer a unique prototype platform for acoustic applications.

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