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arxiv: 1805.07283 · v1 · submitted 2018-05-18 · ⚛️ physics.flu-dyn

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Expansion Dynamics After Laser-Induced Cavitation in Liquid Tin Microdroplets

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classification ⚛️ physics.flu-dyn
keywords expansiondynamicsexperimentallaserliquidmicrodropletsmodelpulse
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The cavitation-driven expansion dynamics of liquid tin microdroplets is investigated, set in motion by the ablative impact of a 15-ps laser pulse. We combine high-resolution stroboscopic shadowgraphy with an intuitive fluid dynamic model that includes the onset of fragmentation, and find good agreement between model and experimental data for two different droplet sizes over a wide range of laser pulse energies. The dependence of the initial expansion velocity on these experimental parameters is heuristically captured in a single power law. Further, the obtained late-time mass distributions are shown to be governed by a single parameter. These studies are performed under conditions relevant for plasma light sources for extreme-ultraviolet nanolithography.

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