Acoustic forces arising from high-frequency surface acoustic waves (SAW) underpin an exciting range of promising techniques for non-contact manipulation of fluid and objects at micron scale. Despite increasing significance of SAW-driven technologies in microfluidics, the understanding of a broad range of phenomena occurring within an individual SAW system is limited. Acoustic effects including streaming and radiation force fields are often assumed to result from wave propagation in a simple planar fashion. The propagation patterns of a single SAW emanating from a finite-width source, however, cause a far richer range of physical effects. In this work, we seek a better understanding of the various effects arising from the incidence of a fini...
This work uses a finite volume method to investigate three dimensional acoustic streaming patterns p...
Lab-on-a-chip microfluidic systems hold substantial promise for a wide range of diagnostic and thera...
This work uses a finite volume method to investigate three dimensional acoustic streaming patterns p...
A challenging topic of the lab-on-a-chip research is to implement sorting mechanisms on low cost dis...
Fluid manipulation at the microscale presents significant challenges to the design of portable chip ...
Recent research has shown that interactions between acoustic waves and microfluidic channels can gen...
The use of ultrasonic fields to manipulate particles, cells and droplets has become widespread in la...
Funder: china scholarship council; FundRef: https://doi.org/10.13039/501100004543The microfluidic te...
The microfluidic technology based on surface acoustic waves (SAW) has been developing rapidly, as it...
This paper presents a systematic overview on the recent works on surface acoustic wave (SAW) driven ...
This paper presents a systematic overview on the recent works on surface acoustic wave (SAW) driven ...
Surface acoustic wave (SAW) devices have become popular as a practical and effective tool for fluid ...
Manipulation of particles and cells is fundamental to numerous biological, chemical and industrial p...
Lab-on-a-chip microfluidic systems hold substantial promise for a wide range of diagnostic and thera...
In this letter, we demonstrate that surface acoustic waves(SAWs) excited on 36°Y-X LiTaO3 have both ...
This work uses a finite volume method to investigate three dimensional acoustic streaming patterns p...
Lab-on-a-chip microfluidic systems hold substantial promise for a wide range of diagnostic and thera...
This work uses a finite volume method to investigate three dimensional acoustic streaming patterns p...
A challenging topic of the lab-on-a-chip research is to implement sorting mechanisms on low cost dis...
Fluid manipulation at the microscale presents significant challenges to the design of portable chip ...
Recent research has shown that interactions between acoustic waves and microfluidic channels can gen...
The use of ultrasonic fields to manipulate particles, cells and droplets has become widespread in la...
Funder: china scholarship council; FundRef: https://doi.org/10.13039/501100004543The microfluidic te...
The microfluidic technology based on surface acoustic waves (SAW) has been developing rapidly, as it...
This paper presents a systematic overview on the recent works on surface acoustic wave (SAW) driven ...
This paper presents a systematic overview on the recent works on surface acoustic wave (SAW) driven ...
Surface acoustic wave (SAW) devices have become popular as a practical and effective tool for fluid ...
Manipulation of particles and cells is fundamental to numerous biological, chemical and industrial p...
Lab-on-a-chip microfluidic systems hold substantial promise for a wide range of diagnostic and thera...
In this letter, we demonstrate that surface acoustic waves(SAWs) excited on 36°Y-X LiTaO3 have both ...
This work uses a finite volume method to investigate three dimensional acoustic streaming patterns p...
Lab-on-a-chip microfluidic systems hold substantial promise for a wide range of diagnostic and thera...
This work uses a finite volume method to investigate three dimensional acoustic streaming patterns p...