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Multi-functional single-source acoustic tweezer
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作者 Xuemei Ren Qinxin Zhou +2 位作者 Jie Huang Zheng Xu Xiaojun Liu 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS CSCD 2023年第12期129-135,共7页
Acoustic tweezers have gained considerable attention due to their potential and important role in various applications.A costeffective and precise method for manipulating particles is using 3D-printed acoustic hologra... Acoustic tweezers have gained considerable attention due to their potential and important role in various applications.A costeffective and precise method for manipulating particles is using 3D-printed acoustic holographic lenses.However,this technique is limited in its determined function for particle manipulation with a single holographic lens.We propose a method to overcome this limitation by constructing a multi-functional acoustic tweezer,which is capable of achieving diverse functions of particle manipulation.We demonstrate the ability to achieve fixed-angle rotation of a rectangular particle,multi-pattern particles arrangement,selectable left-right movement of a particle on a line,and completing two distinct trajectories with a single particle.Our proposed method offers a flexible and real-time controlling approach for acoustic tweezers,which can partially substitute the phased arrays with high circuit complexity. 展开更多
关键词 acoustic hologram acoustic tweezer particle transport
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Scheme of negative acoustic radiation force based on a multiple-layered spherical structure
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作者 宫门阳 徐鑫 +3 位作者 乔玉配 刘杰惠 何爱军 刘晓宙 《Chinese Physics B》 SCIE EI CAS CSCD 2024年第1期477-487,共11页
Acoustic radiation force(ARF), as an important particle manipulation method, has been extensively studied in recent years. With the introduction of the concept of “acoustic tweezers”, negative acoustic radiation has... Acoustic radiation force(ARF), as an important particle manipulation method, has been extensively studied in recent years. With the introduction of the concept of “acoustic tweezers”, negative acoustic radiation has become a research hotspot. In this paper, a scheme of realizing negative ARF based on the multiple-layered spherical structure design is proposed. The specific structure and design idea are presented. Detailed theoretical calculation analysis is carried out.Numerical simulations have been performed to verify the correctness of this prediction. The conjecture that the suppression of backscattering can achieve negative ARF is verified concretely, which greatly expands the application prospect and design ideas of the ARF. This work has laid a theoretical foundation for realizing precise control of the structure. 展开更多
关键词 acoustic tweezers negative acoustic radiation force particle manipulation
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Manipulations of micro/nanoparticles using gigahertz acoustic streaming tweezers 被引量:1
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作者 Hang Wu Zifan Tang +8 位作者 Rui You Shuting Pan Wenpeng Liu Hongxiang Zhang Tiechuan Li Yang Yang Chongling Sun Wei Pang Xuexin Duan 《Nanotechnology and Precision Engineering》 CAS CSCD 2022年第2期1-11,共11页
Contactless acoustic manipulation of micro/nanoscale particles has attracted considerable attention owing to its near independence of the physical and chemical properties of the targets,making it universally applicabl... Contactless acoustic manipulation of micro/nanoscale particles has attracted considerable attention owing to its near independence of the physical and chemical properties of the targets,making it universally applicable to almost all biological systems.Thin-film bulk acoustic wave(BAW)resonators operating at gigahertz(GHz)frequencies have been demonstrated to generate localized high-speed microvortices through acoustic streaming effects.Benefitting from the strong drag forces of the high-speed vortices,BAW-enabled GHz acoustic streaming tweezers(AST)have been applied to the trapping and enrichment of particles ranging in size from micrometers to less than 100 nm.However,the behavior of particles in such 3D microvortex systems is still largely unknown.In this work,the particle behavior(trapping,enrichment,and separation)in GHz AST is studied by theoretical analyses,3D simulations,and microparticle tracking experiments.It is found that the particle motion in the vortices is determined mainly by the balance between the acoustic streaming drag force and the acoustic radiation force.This work can provide basic design principles for AST-based lab-on-a-chip systems for a variety of applications. 展开更多
关键词 Acoustofluidics Bulk acoustic wave resonator acoustic streaming acoustic tweezers Particle manipulation
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