We investigate the role of surface nanoscale topographies in the inhomogeneous coupling of laser radiation to Ni-based superalloy CMSX-4 surfaces and in the formation of laser-induced periodic surface structures. The initial surface arbitrary roughness is already able, upon laser exposure, to induce low-spatial-frequency and high-spatial-frequency structures, actively determining an interference of incoming and scattered fields resulting in spatial energy modulation. A topology variation with the incoming dose via the number of pulses determines a correlated evolution in the regular ripple arrangements. The scattering pattern is severely influenced by the scattering source geometries. Therefore, we equally study experimentally the role of o...
Ultrafast laser irradiation can trigger anisotropically structured nanoscaled gratinglike arrangemen...
International audienceFemtosecond surface structure modifications are investigated under irradiation...
International audienceApplication potential for ultrashort laser pulses relies on their remarkable c...
International audienceWe investigate the role of surface nanoscale topographies in the inhomogeneous...
International audienceProgress in manufacturing, energy conversion or transportation is closely tied...
The abrupt transition from low-spatial-frequency laser-induced periodic surface structure (LSFL) to ...
International audienceUltrafast-laser irradiated surfaces are self-organizing systems that form intr...
Femtosecond lasers have proved to be great tools for precise, accurate and high quality micro- but a...
We report on the dependence of femtosecond laser-induced periodic surface structures on an increase ...
A laser-irradiated surface is the paradigm of a self-organizing system, as coherent, aligned, chaoti...
International audienceNano-scale and micro-scale laser-induced periodic surface structures (ripples)...
International audienceThe origin of high-spatial-frequency laser-induced periodicsurface structures ...
International audienceUltrafast laser pulses confine a large number of photons spatiotemporally, all...
International audienceTo form regular periodic patterns on surface irradiated by ultrafast laser wit...
Ultrafast laser irradiation can trigger anisotropically structured nanoscaled gratinglike arrangemen...
International audienceFemtosecond surface structure modifications are investigated under irradiation...
International audienceApplication potential for ultrashort laser pulses relies on their remarkable c...
International audienceWe investigate the role of surface nanoscale topographies in the inhomogeneous...
International audienceProgress in manufacturing, energy conversion or transportation is closely tied...
The abrupt transition from low-spatial-frequency laser-induced periodic surface structure (LSFL) to ...
International audienceUltrafast-laser irradiated surfaces are self-organizing systems that form intr...
Femtosecond lasers have proved to be great tools for precise, accurate and high quality micro- but a...
We report on the dependence of femtosecond laser-induced periodic surface structures on an increase ...
A laser-irradiated surface is the paradigm of a self-organizing system, as coherent, aligned, chaoti...
International audienceNano-scale and micro-scale laser-induced periodic surface structures (ripples)...
International audienceThe origin of high-spatial-frequency laser-induced periodicsurface structures ...
International audienceUltrafast laser pulses confine a large number of photons spatiotemporally, all...
International audienceTo form regular periodic patterns on surface irradiated by ultrafast laser wit...
Ultrafast laser irradiation can trigger anisotropically structured nanoscaled gratinglike arrangemen...
International audienceFemtosecond surface structure modifications are investigated under irradiation...
International audienceApplication potential for ultrashort laser pulses relies on their remarkable c...