Wang Yin, Qian Jiao, Xia Jian-Ping, Ge Yong, Yuan Shou-Qi, Sun Hong-Xiang, Liu Xiao-Jun
Research Center of Fluid Machinery Engineering and Technology, School of Physics and Electronic Engineering, School of Computer Science and Communication Engineering, Jiangsu University, Zhenjiang 212013, China.
Collaborative Innovation Center of Advanced Microstructures, Key Laboratory of Modern Acoustics, Department of Physics, Nanjing University, Nanjing 210093, China.
Micromachines (Basel). 2021 Nov 12;12(11):1388. doi: 10.3390/mi12111388.
Vortex beams have a typical characteristic of orbital angular momentum, which provides a new degree of freedom for information processing in remote communication and a form of non-contact manipulation for trapping particles. In acoustics, vortex beams are generally observed on the surface of a metamaterial structure or in a waveguide with a hard boundary owing to the characteristic of easy diffusion in free space. The realization of an acoustic vortex beam with a long-distance propagation in free space still remains a challenge. To overcome this, we report a type of acoustic Bessel vortex (ABV) beam created by a quasi-three-dimensional reflected metasurface in free space based on phase modulation. By using the Bessel and vortex phase profiles, we can realize an ABV beam with the high performances of both Bessel and vortex beams, and its effective propagation distance is larger than 9.2 in free space. Beyond that, we discuss the bandwidth and topological charge of the ABV beam in detail, and the fractional bandwidth can reach about 0.28. The proposed ABV beam has the advantages of a high-performance vortex, long-distance propagation, and broad bandwidth, which provide a new pathway for designing multifunctional vortex devices with promising applications.
涡旋光束具有典型的轨道角动量特性,这为远程通信中的信息处理提供了新的自由度,并为捕获粒子提供了一种非接触操纵形式。在声学中,由于在自由空间中易于扩散的特性,涡旋光束通常在超材料结构表面或具有硬边界的波导中观察到。实现具有在自由空间中长距离传播的声学涡旋光束仍然是一个挑战。为了克服这一问题,我们报道了一种基于相位调制由准三维反射超表面在自由空间中产生的声学贝塞尔涡旋(ABV)光束。通过使用贝塞尔和涡旋相位分布,我们可以实现具有贝塞尔光束和涡旋光束两者高性能的ABV光束,并且其在自由空间中的有效传播距离大于9.2。除此之外,我们详细讨论了ABV光束的带宽和拓扑电荷,分数带宽可达约0.28。所提出的ABV光束具有高性能涡旋、长距离传播和宽带宽的优点,为设计具有广阔应用前景的多功能涡旋器件提供了一条新途径。