most citedCyclones and attractive streaming generated by acoustical vortices

37 citations · 41 across the 5 of their papers we have counts for

collaborators

5 papers

physics.app-ph20221 cited

Single beam acoustical tweezers based on focused beams: A numerical analysis of 2D and 3D trapping capabilities

Zhixiong Gong, Michael Baudoin

Selective single beam tweezers open tremendous perspectives in microfluidics and microbiology for the micromanipulation, assembly and mechanical properties testing of microparticle…

physics.class-ph20222 cited

Ultra-high frequency vortex-based tweezers for microparticles manipulation with high spatial selectivity and nanoNewton forces

Roudy Al Sahely, J-C Gerbedoen, Nikolay Smagin +3

Acoustical tweezers based on focused acoustical vortices open some tremendous perspectives for the in vitro and in vivo remote manipulation of millimetric down to micrometric objec…

physics.flu-dyn20221 cited

Elucidating the oscillation instability of sessile drops triggered by surface acoustic waves

Nicolas Chastrette, Michael Baudoin, Philippe Brunet +2

The oscillation instability of sessile drops is ubiquitous in surface acoustic wave (SAW)-powered digital microfluidics. Yet, the physics underlying these phenomena has not been el…

physics.bio-ph2014

Cell detachment and label-free cell sorting using modulated surface acoustic waves (SAW) in droplet-based microfluidics

Adrien Bussonnière, Yannick Miron, Michael Baudoin +4

We present a droplet-based surface acoustic wave (SAW) system designed to viably detach biological cells from a surface and sort cell types based on differences in adhesion strengt…

physics.flu-dyn201437 cited

Cyclones and attractive streaming generated by acoustical vortices

Antoine Riaud, Michael Baudoin, Jean-Louis Thomas +1

Acoustical and optical vortices have attracted large interest due to their ability in capturing and manipulating particles with the use of the radiation pressure. Here we show that…