Femtosecond diffraction dynamics of laser-induced periodic surface structures on fused silica

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Abstract

The formation of laser-induced periodic surface structures (LIPSS) on fused silica upon irradiation with linearly polarized fs-laser pulses (50 fs pulse duration, 800 nm center wavelength) is studied experimentally using a transillumination femtosecond time-resolved (0.1 ps-1 ns) pump-probe diffraction approach. This allows to reveal the generation dynamics of near-wavelength- sized LIPSS showing a transient diffraction at specific spatial frequencies even before a corresponding permanent surface relief was observed. The results confirm that the ultrafast energy deposition to the materials surface plays a key role and triggers subsequent physical mechanisms such as carrier scattering into self-trapped excitons. © 2013 American Institute of Physics.

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Höhm, S., Rosenfeld, A., Krüger, J., & Bonse, J. (2013). Femtosecond diffraction dynamics of laser-induced periodic surface structures on fused silica. Applied Physics Letters, 102(5). https://doi.org/10.1063/1.4790284

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