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Drop fragmentation by laser-pulse impact

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arxiv 1910.02522 v1 pith:DMAILYYO submitted 2019-10-06 physics.flu-dyn

classification physics.flu-dyn
keywords dropfragmentationsheetdifferentinstabilitiesligamentsliquidaffects
verification ladder T0 review T1 audit T2 compute T3 formal
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We study the fragmentation of a liquid drop that is hit by a laser pulse. The drop expands into a thin sheet that breaks by the radial expulsion of ligaments from its rim and the nucleation and growth of holes on the sheet. By combining experimental data from two liquid systems with vastly different time- and length scales we show how the early-time laser-matter interaction affects the late-time fragmentation. We identify two Rayleigh--Taylor instabilities of different origins as the prime cause of the fragmentation and derive scaling laws for the characteristic breakup time and wavenumber. The final web of ligaments results from a subtle interplay between these instabilities and deterministic modulations of the local sheet thickness, which originate from the drop deformation dynamics and spatial variations in the laser-beam profile.

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