Non-contact manipulation is of great importance in the actuation of micro-robotics. It is challenging to contactless manipulate micro-scale objects over large spatial distance in fluid. Here, we describe a novel approach for the dynamic position control of microparticles in three-dimensional (3D) space, based on high-speed acoustic streaming generated by a micro-fabricated gigahertz transducer. The hydrodynamic force generated by the streaming flow field has a vertical component against gravity and a lateral component towards the center, thus the microparticle is able to be stably trapped at a position far from the transducer surface, and to be manipulated over centimeter distance in 3D. Only the hydrodynamic force is utilized in the system...
Surface acoustic waves offer a versatile and biocompatible method of manipulating the location of su...
This paper investigates the mechanism of self-stabilizing, three-dimensional Mie particle manipulati...
Acoustophoresis is generation of force fields by using sound waves. In microfluidics, micro-scale fl...
Non-contact manipulation is of great importance in the actuation of micro-robotics. It is challengin...
Acoustic tweezers use ultrasound for contact-free manipulation of particles from millimeter to sub-m...
International audienceThe contactless collective or selective manipulation of microscopic objects is...
International audienceThis paper presents a microfluidic device that implements standing surface aco...
The ability of surface acoustic waves to trap and manipulate micrometer-scale particles and biologic...
Acoustic radiation force has been demonstrated as a method for manipulating micron-scale particles, ...
Surface acoustic wave (SAW) devices have become popular as a practical and effective tool for fluid ...
Concentration and separation of particles and biological specimens are fundamental functions of micr...
Nanoacoustic fields are a promising method for particle actuation at the nanoscale, though THz frequ...
In recent years, manipulating micro particles and cells using acoustic waves has experienced signifi...
Acoustical tweezers based on focused acoustical vortices open some tremendous perspectives for the i...
International audienceThree-dimensional harmless contactless manipulation and assembly of micro-obje...
Surface acoustic waves offer a versatile and biocompatible method of manipulating the location of su...
This paper investigates the mechanism of self-stabilizing, three-dimensional Mie particle manipulati...
Acoustophoresis is generation of force fields by using sound waves. In microfluidics, micro-scale fl...
Non-contact manipulation is of great importance in the actuation of micro-robotics. It is challengin...
Acoustic tweezers use ultrasound for contact-free manipulation of particles from millimeter to sub-m...
International audienceThe contactless collective or selective manipulation of microscopic objects is...
International audienceThis paper presents a microfluidic device that implements standing surface aco...
The ability of surface acoustic waves to trap and manipulate micrometer-scale particles and biologic...
Acoustic radiation force has been demonstrated as a method for manipulating micron-scale particles, ...
Surface acoustic wave (SAW) devices have become popular as a practical and effective tool for fluid ...
Concentration and separation of particles and biological specimens are fundamental functions of micr...
Nanoacoustic fields are a promising method for particle actuation at the nanoscale, though THz frequ...
In recent years, manipulating micro particles and cells using acoustic waves has experienced signifi...
Acoustical tweezers based on focused acoustical vortices open some tremendous perspectives for the i...
International audienceThree-dimensional harmless contactless manipulation and assembly of micro-obje...
Surface acoustic waves offer a versatile and biocompatible method of manipulating the location of su...
This paper investigates the mechanism of self-stabilizing, three-dimensional Mie particle manipulati...
Acoustophoresis is generation of force fields by using sound waves. In microfluidics, micro-scale fl...