We study particle trapping driven by the axial primary radiation force (A-PRF) in shaped traps exposed to standing bulk acoustic waves (S-BAW) using numerical simulations and experiments. The utilization of the stronger A-PRF as the main retention force is a consequence of standing-wave formation along the flow direction, instead of the orthogonal direction as in the case of traditionally used lateral-PRF S-BAW trapping setups. The study of particle dynamics reveals that the competition between A-PRF and viscous drag force governs particle trajectory. The ratio of the acoustic energy to the viscous work (β) provides a general criterion for particle trapping at a distinctive off-node site that is spatially controllable. Particles get trapped...
Whilst the main strength of optical trapping techniques is arguably its precision and dexterity, the...
Within an acoustic standing wave particles experience acoustic radiation forces, a phenomenon which ...
Whilst the main strength of optical trapping techniques is arguably its precision and dexterity, the...
We study particle trapping driven by the axial primary radiation force (A-PRF) in shaped traps expos...
Acoustic standing waves have been widely used in trapping, patterning, and manipulating particles, w...
International audienceIt is well known that a particle put into an ultrasonic standing wave tends to...
International audienceIt is well known that a particle put into an ultrasonic standing wave tends to...
The use of ultrasonic fields to manipulate particles, cells and droplets has become widespread in la...
Ultrasonic standing wave fields are able to trap and manipulate biological cells and other micron sc...
Ultrasonic standing wave fields are able to trap and manipulate biological cells and other micron sc...
We are investigating means of handling microparticles in microfluidic systems, in particular localiz...
It is well known that a particle put into an ultrasonic standing wave tends to move towards an equil...
Waves can transport momentum over large distances. Encountering an obstacle leads to a scattering ev...
An acoustic field barrier integrated within a flow tubing system to achieve high-throughput separati...
The use of ultrasound for trapping and patterning particles or cells in microfluidic systems is usua...
Whilst the main strength of optical trapping techniques is arguably its precision and dexterity, the...
Within an acoustic standing wave particles experience acoustic radiation forces, a phenomenon which ...
Whilst the main strength of optical trapping techniques is arguably its precision and dexterity, the...
We study particle trapping driven by the axial primary radiation force (A-PRF) in shaped traps expos...
Acoustic standing waves have been widely used in trapping, patterning, and manipulating particles, w...
International audienceIt is well known that a particle put into an ultrasonic standing wave tends to...
International audienceIt is well known that a particle put into an ultrasonic standing wave tends to...
The use of ultrasonic fields to manipulate particles, cells and droplets has become widespread in la...
Ultrasonic standing wave fields are able to trap and manipulate biological cells and other micron sc...
Ultrasonic standing wave fields are able to trap and manipulate biological cells and other micron sc...
We are investigating means of handling microparticles in microfluidic systems, in particular localiz...
It is well known that a particle put into an ultrasonic standing wave tends to move towards an equil...
Waves can transport momentum over large distances. Encountering an obstacle leads to a scattering ev...
An acoustic field barrier integrated within a flow tubing system to achieve high-throughput separati...
The use of ultrasound for trapping and patterning particles or cells in microfluidic systems is usua...
Whilst the main strength of optical trapping techniques is arguably its precision and dexterity, the...
Within an acoustic standing wave particles experience acoustic radiation forces, a phenomenon which ...
Whilst the main strength of optical trapping techniques is arguably its precision and dexterity, the...