Surface instability of multipulse laser ablation on a metallic target

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Abstract

Large scale wavelike patterns are observed on an aluminum surface after it is ablated by a series of KrF laser pulses (248 nm, 40 ns, 5 J/cm2). These surface structures have a wavelength on the order of 30 μm, much longer than the laser wavelength. We postulate that these wave patterns are caused by the Kelvin-Helmholtz instability at the interface between the molten aluminum and the plasma plume. A parametric study is given in terms of the molten layer's thickness and of the spatial extent and kinetic energy density in the laser-produced plasma plume. Also included is an estimate of the cumulative growth in a multipulse laser ablation experiment. These estimates indicate that the Kelvin-Helmholtz instability is a viable mechanism for the formation of the large scale structures. © 1998 American Institute of Physics.

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Ang, L. K., Lau, Y. Y., Gilgenbach, R. M., Spindler, H. L., Lash, J. S., & Kovaleski, S. D. (1998). Surface instability of multipulse laser ablation on a metallic target. Journal of Applied Physics, 83(8), 4466–4471. https://doi.org/10.1063/1.367208

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