Starkey Timothy A, Kyrimi Vicky, Ward Gareth P, Sambles J Roy, Hibbins Alastair P
University of Exeter, Electromagnetic and Acoustic Materials Group, Department of Physics and Astronomy, Exeter, EX4 4QL, United Kingdom.
Sci Rep. 2019 Oct 31;9(1):15773. doi: 10.1038/s41598-019-50446-z.
The Dirac point and associated linear dispersion exhibited in the band structure of bound (non-radiative) acoustic surface modes supported on a honeycomb array of holes is explored. An aluminium plate with a honeycomb lattice of periodic sub-wavelength perforations is characterised by local pressure field measurements above the sample surface to obtain the full band-structure of bound modes. The local pressure fields of the bound modes at the K and M symmetry points are imaged, and the losses at frequencies near the Dirac frequency are shown to increase monotonically as the mode travels through the K point at the Dirac frequency on the honeycomb lattice. Results are contrasted with those from a simple hexagonal array of similar holes, and both experimentally obtained dispersion relations are shown to agree well with the predictions of a numerical model.
研究了在蜂窝状孔阵列上支持的束缚(非辐射)声学表面模式的能带结构中呈现的狄拉克点和相关的线性色散。通过对样品表面上方的局部压力场进行测量,对具有周期性亚波长穿孔的蜂窝晶格铝板进行表征,以获得束缚模式的完整能带结构。对K和M对称点处束缚模式的局部压力场进行成像,结果表明,当模式在蜂窝晶格上以狄拉克频率穿过K点时,狄拉克频率附近频率处的损耗会单调增加。将结果与具有类似孔的简单六边形阵列的结果进行对比,实验获得的色散关系均与数值模型的预测结果吻合良好。