International audiencePowerful ultrafast femtosecond laser pulses have the unique ability to ablate material with minimal collateral damage. This ability offers the potential for new applications of ultrafast lasers for removing surface contamination and unwanted surface layers in the conservation of artworks and heritage objects. In this paper we concentrate on the problem of precise and fast scanning of the laser spot over the treated surface for cleaning relatively large surface areas. Preliminary results are presented for the removal of intrusive paint layers, using a 12-ps laser with 1.5 MHz repetition rate, and 0.5 ps laser with 10 kHz repetition rate
Compared with the traditional cleaning technology, laser cleaning, as a new type of industrial techn...
The potential of laser techniques in conservation has needed a long development period to be fully d...
AbstractPulsed and continuous wave lasers, which are widely applied in diverse micromachining indust...
Powerful ultrafast femtosecond laser pulses have the unique ability to ablate material with minimal ...
International audiencePowerful ultrafast laser pulses have a unique capability to ablate material fr...
The numerous attempts to use lasers in different fields of conservation reflect awareness of their p...
Recently, ultrafast lasers exhibiting high peak powers and extremely short pulse durations have crea...
Laser ablation of large surfaces requires a significant increase in the pulse repetition rate, fast ...
Laser cleaning techniques have been considered amongst the most impactful contributions of Physics t...
International audienceLaser cleaning of complex surfaces (paints and metals with a micrometric oxide...
Microsecond and nanosecond lasers have been studied in the past for laser cleaning applications, but...
Laser irradiation enables the removal of unwanted surface deposits from different materials in a saf...
The pulsed laser cleaning (PLC) technique employing different laser wavelengths, with a ns pulse dur...
Recently, ultrafast lasers exhibiting high peak powers and extremely short pulse durations have crea...
In this thesis surface decontamination via USP (ultra-short pulse) laser ablation is experimentally ...
Compared with the traditional cleaning technology, laser cleaning, as a new type of industrial techn...
The potential of laser techniques in conservation has needed a long development period to be fully d...
AbstractPulsed and continuous wave lasers, which are widely applied in diverse micromachining indust...
Powerful ultrafast femtosecond laser pulses have the unique ability to ablate material with minimal ...
International audiencePowerful ultrafast laser pulses have a unique capability to ablate material fr...
The numerous attempts to use lasers in different fields of conservation reflect awareness of their p...
Recently, ultrafast lasers exhibiting high peak powers and extremely short pulse durations have crea...
Laser ablation of large surfaces requires a significant increase in the pulse repetition rate, fast ...
Laser cleaning techniques have been considered amongst the most impactful contributions of Physics t...
International audienceLaser cleaning of complex surfaces (paints and metals with a micrometric oxide...
Microsecond and nanosecond lasers have been studied in the past for laser cleaning applications, but...
Laser irradiation enables the removal of unwanted surface deposits from different materials in a saf...
The pulsed laser cleaning (PLC) technique employing different laser wavelengths, with a ns pulse dur...
Recently, ultrafast lasers exhibiting high peak powers and extremely short pulse durations have crea...
In this thesis surface decontamination via USP (ultra-short pulse) laser ablation is experimentally ...
Compared with the traditional cleaning technology, laser cleaning, as a new type of industrial techn...
The potential of laser techniques in conservation has needed a long development period to be fully d...
AbstractPulsed and continuous wave lasers, which are widely applied in diverse micromachining indust...