Investigations on the ablation of steel and copper with femtosecond laser pulses using single pulses and bursts of infinite sequence of pulses with 1 GHz intraburst repetition rate are presented in this paper. The ablation efficiency is compared to the case of single femtosecond laser pulses. Based on the literature a model of the ablation process is presented explaining the behavior of a pulse burst and the good qualitative agreement of the numerical and experimental ablation efficiencies is obtained
We have investigated the ultra-fast microdrilling of metals using a compact and cheap fiber amplifie...
The high throughput in the laser microfabrication is a key factor for most of industry companies. In...
Ablation of copper using multipulse femtosecond laser irradiation with an 800 nm wavelength and 120-...
Micromachining of steel, Cu and Al is studied. Ablation depths per pulse are deduced for laser pulse...
AbstractIn laser microstructuring there is a general conflict between precision and efficiency. Shor...
We are examining the merits and differences of using finite bursts of GHz-level pulses for ablating ...
We investigated GHz pulse bursts ablation on metals, silicon, zirconium dioxide, soda-lime glass and...
We have investigated ultrashort laser micromachining of metals, both from the point of view of the b...
Femtosecond ablation of both absorbing and transparent materials has several distinct advantages: th...
Laser ablation with pulse bursts was studied to increase the ablation rate of steel. Pulse bursts co...
AbstractCompared to single pulses the utilization of pulse bursts on steel samples was reported to b...
Gigahertz (GHz) femtosecond (fs) lasers have opened possibilities for enhancing and controlling the ...
A microfabrication system with the use of a femtosecond laser was designed for 3D processing of indu...
Compared to single pulses the utilization of pulse bursts on steel samples was reported to be more e...
Laser processing with ultra-short double pulses has gained attraction since the beginning of the 200...
We have investigated the ultra-fast microdrilling of metals using a compact and cheap fiber amplifie...
The high throughput in the laser microfabrication is a key factor for most of industry companies. In...
Ablation of copper using multipulse femtosecond laser irradiation with an 800 nm wavelength and 120-...
Micromachining of steel, Cu and Al is studied. Ablation depths per pulse are deduced for laser pulse...
AbstractIn laser microstructuring there is a general conflict between precision and efficiency. Shor...
We are examining the merits and differences of using finite bursts of GHz-level pulses for ablating ...
We investigated GHz pulse bursts ablation on metals, silicon, zirconium dioxide, soda-lime glass and...
We have investigated ultrashort laser micromachining of metals, both from the point of view of the b...
Femtosecond ablation of both absorbing and transparent materials has several distinct advantages: th...
Laser ablation with pulse bursts was studied to increase the ablation rate of steel. Pulse bursts co...
AbstractCompared to single pulses the utilization of pulse bursts on steel samples was reported to b...
Gigahertz (GHz) femtosecond (fs) lasers have opened possibilities for enhancing and controlling the ...
A microfabrication system with the use of a femtosecond laser was designed for 3D processing of indu...
Compared to single pulses the utilization of pulse bursts on steel samples was reported to be more e...
Laser processing with ultra-short double pulses has gained attraction since the beginning of the 200...
We have investigated the ultra-fast microdrilling of metals using a compact and cheap fiber amplifie...
The high throughput in the laser microfabrication is a key factor for most of industry companies. In...
Ablation of copper using multipulse femtosecond laser irradiation with an 800 nm wavelength and 120-...