Iglesias Martínez Julio Andrés, Groß Michael Fidelis, Chen Yi, Frenzel Tobias, Laude Vincent, Kadic Muamer, Wegener Martin
Institut FEMTO-ST, UMR 6174, CNRS, Université de Bourgogne Franche-Comté, Besançon, 25030, France.
Institute of Applied Physics, Karlsruhe Institute of Technology (KIT), Karlsruhe 76128, Germany.
Sci Adv. 2021 Dec 3;7(49):eabm2189. doi: 10.1126/sciadv.abm2189. Epub 2021 Dec 1.
Previously, rotons were observed in correlated quantum systems at low temperatures, including superfluid helium and Bose-Einstein condensates. Here, following a recent theoretical proposal, we report the direct experimental observation of roton-like dispersion relations in two different three-dimensional metamaterials under ambient conditions. One experiment uses transverse elastic waves in microscale metamaterials at ultrasound frequencies. The other experiment uses longitudinal air-pressure waves in macroscopic channel–based metamaterials at audible frequencies. In both experiments, we identify the roton-like minimum in the dispersion relation that is associated to a triplet of waves at a given frequency. Our work shows that designed interactions in metamaterials beyond the nearest neighbors open unprecedented experimental opportunities to tailor the lowest dispersion branch—while most previous metamaterial studies have concentrated on shaping higher dispersion branches.
此前,在低温下的相关量子系统中观察到了旋子,包括超流氦和玻色 - 爱因斯坦凝聚体。在此,根据最近的一项理论提议,我们报告了在环境条件下两种不同的三维超材料中类旋子色散关系的直接实验观测结果。一个实验利用了超声频率下微尺度超材料中的横向弹性波。另一个实验利用了可听频率下基于宏观通道的超材料中的纵向气压波。在这两个实验中,我们都识别出色散关系中与给定频率下的三重波相关的类旋子极小值。我们的工作表明,超材料中超出最近邻的设计相互作用为定制最低色散分支开辟了前所未有的实验机会,而此前大多数超材料研究都集中在塑造更高的色散分支上。