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Título

Key stages of material expansion in dielectrics upon femtosecond laser ablation revealed by double-color illumination time-resolved microscopy

AutorGarcía-Lechuga, Mario CSIC ORCID ; Solís Céspedes, Javier CSIC ORCID ; Siegel, Jan CSIC ORCID
Fecha de publicación8-feb-2018
EditorSpringer Nature
CitaciónApplied Physics A: Materials Science and Processing 124: 221 (2018)
ResumenThe physical origin of material removal in dielectrics upon femtosecond laser pulse irradiation (800 nm, 120 fs pulse duration) has been investigated at fluences slightly above ablation threshold. Making use of a versatile pump–probe microscopy setup, the dynamics and different key stages of the ablation process in lithium niobate have been monitored. The use of two different illumination wavelengths, 400 and 800 nm, and a rigorous image analysis combined with theoretical modelling, enables drawing a clear picture of the material excitation and expansion stages. Immediately after excitation, a dense electron plasma is generated. Few picoseconds later, direct evidence of a rarefaction wave propagating into the bulk is obtained, with an estimated speed of 3650 m/s. This process marks the onset of material expansion, which is confirmed by the appearance of transient Newton rings, which dynamically change during the expansion up to approximately 1 ns. Exploring delays up to 15 ns, a second dynamic Newton ring pattern is observed, consistent with the formation of a second ablation front propagating five times slower than the first one.
Descripción8 pags., 6 figs.
Versión del editorhttps://doi.org/10.1007/s00339-018-1650-1
URIhttp://hdl.handle.net/10261/171529
DOI10.1007/s00339-018-1650-1
Identificadoresdoi: 10.1007/s00339-018-1650-1
issn: 1432-0630
Aparece en las colecciones: (CFMAC-IO) Artículos




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