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Updated: Jan 26, 2026

Fabrication, Operation and Flow Visualization in Surface-acoustic-wave-driven Acoustic-counterflow Microfluidics
Published on: August 27, 2013
Folding a focalized acoustical vortex on a flat holographic transducer: Miniaturized selective acoustical tweezers
Michael Baudoin1, Jean-Claude Gerbedoen1, Antoine Riaud2
1Université de Lille, CNRS, Centrale Lille, ISEN, Université Polytechnique des Hauts-de-France, UMR 8520, SATT Nord, IEMN, International laboratory LIA/LICS, F-59000 Lille, France.
Abstract:
Acoustical tweezers based on focalized acoustical vortices hold the promise of precise contactless manipulation of millimeter down to submicrometer particles, microorganisms, and cells with unprecedented combined selectivity and trapping force. Yet, the widespread dissemination of this technology has been hindered by severe limitations of current systems in terms of performance and/or miniaturization and integrability. Here, we unleash the potential of focalized acoustical vortices by developing the first flat, compact, paired single electrode focalized acoustical tweezers. These tweezers rely on spiraling transducers obtained by folding a spherical acoustical vortex on a flat piezoelectric substrate. We demonstrate the ability of these tweezers to grab and displace micrometric objects in a standard microfluidic environment with unique selectivity. The simplicity of this system and its scalability to higher frequencies open tremendous perspectives in microbiology, microrobotics, and microscopy.
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