A review on single-beam acoustical tweezers: From tractor beam to selective trapping
Shiyu Li1, Liwei Chen1, Yicheng Feng1
1State Key Laboratory of Ocean Engineering, School of Ocean and Civil Engineering, Shanghai Jiao Tong University, No. 800 Dongchuan Road, Shanghai, 200240, China.
Abstract:
Single-beam acoustical tweezers show promising prospects in various fields such as biomedical engineering, bubble-based controlled drug delivery, and acoustic material printing for microparticle manipulation and assembly. Acoustic vortices (including cylindrical and spherical types) not only carry pseudo-linear momentum enabling pulling/selective trapping and orbital rotation of particles (at off-axis incidence), but also possess pseudo-angular momentum that induces spinning rotation, thereby substantially enriching the degrees of freedom in acoustical manipulation. This review aims at providing a comprehensive literature on the rapidly developing tool of single-beam acoustical tweezers from the point of view of both theoretical development and representative experimental demonstrations. Furthermore, we discuss the perspectives and ongoing challenges for single-beam acoustical tweezers for applications in several potential fields.


