We have investigated the ultra-fast microdrilling of metals using a compact and cheap fiber amplified passively Q-switched microchip laser. This laser system delivers 100-ps pulses with repetition rates higher than 100 kHz and pulse energies up to 80 mu J. The ablation process has been studied on metals with quite different thermal properties (copper, carbon steel and stainless steel). The dependence of the ablation depth per pulse on the pulse energy follows the same logarithmic scaling laws governing laser ablation with sub-picosecond pulses. Structures ablated with 100-ps laser pulses are accompanied only by a thin layer of melted material. Despite this, results with a high level of precision are obtained when using the laser trepanning ...
We have developed an efficient, high precision system for direct laser microstructuring using fiber ...
Investigations on the ablation of steel and copper with femtosecond laser pulses using single pulses...
International audienceWe investigate processing times of ultrafast laser machining in the case of me...
We have investigated the ultra-fast microdrilling of metals using a compact and cheap fiber amplifie...
We investigate the microdrilling of metals (stainless steel, copper and tungsten) for two different ...
Micromachining of steel, Cu and Al is studied. Ablation depths per pulse are deduced for laser pulse...
We report on ultrashort pulse laser micromachining experiments on different metals at average powers...
We report on ultrashort pulse laser micromachining experiments on different metals at average powers...
AbstractIn laser microstructuring there is a general conflict between precision and efficiency. Shor...
A microfabrication system with the use of a femtosecond laser was designed for 3D processing of indu...
In the production of micro-scaled products and products with micro and nano scaled surface functiona...
Fiber lasers in MOPA configuration are a very flexible tool for micromachining applications since th...
Laser materials processing has been an intensive research topic since the invention of the laser. no...
We report a novel ultrafast burst mode fiber laser system, which can deliver pulses at ultra-high re...
AbstractIn this study, a 532nm nanosecond pulsed Ytterbium fiber laser is used to study the physical...
We have developed an efficient, high precision system for direct laser microstructuring using fiber ...
Investigations on the ablation of steel and copper with femtosecond laser pulses using single pulses...
International audienceWe investigate processing times of ultrafast laser machining in the case of me...
We have investigated the ultra-fast microdrilling of metals using a compact and cheap fiber amplifie...
We investigate the microdrilling of metals (stainless steel, copper and tungsten) for two different ...
Micromachining of steel, Cu and Al is studied. Ablation depths per pulse are deduced for laser pulse...
We report on ultrashort pulse laser micromachining experiments on different metals at average powers...
We report on ultrashort pulse laser micromachining experiments on different metals at average powers...
AbstractIn laser microstructuring there is a general conflict between precision and efficiency. Shor...
A microfabrication system with the use of a femtosecond laser was designed for 3D processing of indu...
In the production of micro-scaled products and products with micro and nano scaled surface functiona...
Fiber lasers in MOPA configuration are a very flexible tool for micromachining applications since th...
Laser materials processing has been an intensive research topic since the invention of the laser. no...
We report a novel ultrafast burst mode fiber laser system, which can deliver pulses at ultra-high re...
AbstractIn this study, a 532nm nanosecond pulsed Ytterbium fiber laser is used to study the physical...
We have developed an efficient, high precision system for direct laser microstructuring using fiber ...
Investigations on the ablation of steel and copper with femtosecond laser pulses using single pulses...
International audienceWe investigate processing times of ultrafast laser machining in the case of me...