Ma Zongjun, Kong Delai, Cai Wenfeng, Wang Zhenming, Cheng Ming, Wu Zixuan, Zhao Xueqian, Cen Mengjia, Dai Haitao, Guo Shifeng, Liu Yan Jun
Department of Electrical and Electronic Engineering, Southern University of Science and Technology, Shenzhen 518055, China.
State Key Laboratory of Optical Fiber and Cable Manufacture Technology, Southern University of Science and Technology, Shenzhen, 518055, China.
Lab Chip. 2024 Oct 9;24(20):4808-4815. doi: 10.1039/d4lc00371c.
We propose an innovative design for interdigital transducers (IDTs), enabling phase modulation of surface acoustic waves (SAWs) with a dislocated electrode structure. By designing the size and arrangement of these dislocated IDTs, a novel type of Airy SAWs can be generated, exhibiting self-accelerating, self-bending, and self-healing characteristics. The acceleration of the generated Airy SAW is 0.081 cm. Furthermore, particles and bubbles can be precisely manipulated using the generated Airy SAW. The proposed dislocated IDTs could be used for generation of many other types of SAWs, hence holding great promise for applications including SAW shaping, particle manipulation/sorting, and acoustic sensing/detection.
我们提出了一种用于叉指换能器(IDT)的创新设计,通过错位电极结构实现表面声波(SAW)的相位调制。通过设计这些错位IDT的尺寸和排列,可以产生一种新型的艾里表面声波,具有自加速、自弯曲和自愈特性。所产生的艾里表面声波的加速度为0.081厘米。此外,利用所产生的艾里表面声波可以精确地操控颗粒和气泡。所提出的错位IDT可用于产生许多其他类型的表面声波,因此在表面声波整形、颗粒操控/分选以及声学传感/检测等应用方面具有巨大的潜力。