论文标题
使用手性表面波的强大声音拉动
Robust acoustic pulling using chiral surface waves
论文作者
论文摘要
我们表明,通过使用由嵌入在水中的两个旋转圆柱体组成的两个音调晶体之间的距离旋转缸组成的两个音响晶体之间的距离旋转缸之间的一对单向手性表面波可以实现远距离和健壮的声学拉力。当激发具有相对小的Bloch波矢量的手性表面模式时,位于界面波导中的粒子会将激发的表面模式分散到具有较大Bloch波矢量的另一种手性表面模式,导致声音拉力的力,无论粒子的大小和材料如何。由于手性表面波对局部疾病的反向散射免疫力,可以按照界面的形状确定柔性轨迹后拉动粒子。因此,这种新的声学拉力方案克服了使用结构化梁(例如短拉力距离,直线式拉力拉动和强烈依赖粒子散射特性)的传统声学拉力的某些局限性。我们的工作还可能激发拓扑声学在声学操作中的应用。
We show that long-range and robust acoustic pulling can be achieved by using a pair of one-way chiral surface waves supported on the interface between two phononic crystals composed of spinning cylinders with equal but opposite spinning velocities embedded in water. When the chiral surface mode with a relative small Bloch wave vector is excited, the particle located in the interface waveguide will scatter the excited surface mode to another chiral surface mode with a greater Bloch wave vector, resulting in an acoustic pulling force, irrespective of the size and material of the particle. Thanks to the backscattering immunity of the chiral surface waves against local disorders, the particle can be pulled following a flexible trajectory as determined by the shape of the interface. As such, this new acoustic pulling scheme overcomes some of the limitations of the traditional acoustic pulling using structured beams, such as short pulling distances, straight-line type pulling and strong dependence on the scattering properties of the particle. Our work may also inspire the application of topological acoustics to acoustic manipulations.