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Updated: Aug 26, 2025

Fabrication, Operation and Flow Visualization in Surface-acoustic-wave-driven Acoustic-counterflow Microfluidics
Published on: August 27, 2013
Dynamics of microflow at the plasma-liquid interface
Lucia Kuthanová1, Tomáš Hoder2
1Department of Physical Electronics, Masaryk University, Kotlářská 2, 61137, Brno, Czech Republic. nanai@mail.muni.cz.
Abstract:
We study the interaction of microplasma with viscous liquid in a narrow gap. The reduced surface tension and viscosity of the liquid droplet from local plasma-heating induce a radial fingering. The introduced methodology enables spatially and temporally resolved quantification of dissipated power density and of resulting velocity of the advancing plasma-liquid interface. For two plasma power scenarios, we demonstrate how the irregular distribution of the two parameters leads to microflow, interface stretching, and to primary droplet fragmentation via capillary instability and end pinching.
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