School of Electrical and Computer Engineering, RMIT University, VIC 3001 Melbourne, Australia.
School of Electrical and Computer Engineering, RMIT University, VIC 3001 Melbourne, Australia and ARC Centre of Excellence for Ultrahigh Bandwidth Devices for Optical Systems, RMIT University, VIC 3001 Melbourne, Australia.
Phys Rev Lett. 2014 Nov 21;113(21):215503. doi: 10.1103/PhysRevLett.113.215503.
We theoretically and experimentally demonstrate the existence of complete surface acoustic wave band gaps in surface phonon-polariton phononic crystals, in a completely monolithic structure formed from a two-dimensional honeycomb array of hexagonal shape domain-inverted inclusions in single crystal piezoelectric Z-cut lithium niobate. The band gaps appear at a frequency of about twice the Bragg band gap at the center of the Brillouin zone, formed through phonon-polariton coupling. The structure is mechanically, electromagnetically, and topographically homogeneous, without any physical alteration of the surface, offering an ideal platform for many acoustic wave applications for photonics, phononics, and microfluidics.
我们从理论和实验两方面证实了,在由单晶硅 z 切铌酸锂中六边形各向异性区域倒反的二维蜂窝状阵列形成的完全整体式结构中,表面声子极化激元声子晶体存在完全的表面声波带隙。这些带隙出现在布里渊区中心布拉格带隙的大约两倍频率处,是通过声子极化激元耦合形成的。该结构在机械、电磁和形貌上具有均匀性,而表面未作任何物理改变,为光子学、声子学和微流控学中的许多声波应用提供了理想的平台。