AbstractThe paper is devoted to the study of plasma effects, which are present in laser ablation at relatively high intensity (I ≥ 1012 W/cm2). We start from the classical "two temperature model" of laser ablation ("cold solid approximation") and we extend it to higher intensities where laser-induced heating and laser-induced changes in the background material become relevant. The new model is also compared to experimental results on laser ablation of solid targets from short pulse lasers at high intensities (up to 1014 W/cm2). Finally, we consider the effects on laser-ablation of laser-generated fast electrons
The use of copper vapour lasers for laser ablation in laser materials processing applications is stu...
The laser irradiation have shown a range of applications from fabricating, melting, and evaporating ...
The laser irradiation have shown a range of applications from fabricating, melting, and evaporating ...
In ultrashort pulse (\u3c10 ps) laser ablation of dielectrics, affected materials are first transfor...
It remains a big challenge to theoretically predict the material removal mechanism in femtosecond la...
Despite extensive studies for many years, the detailed mechanisms of ultrashort laser pulse (USLP)-m...
International audienceAblation of metal targets by femtosecond laser pulses is studied numerically b...
During the last decade, our groups have performed systematic experimental studies on the characteriz...
n this work we investigate electron heating induced by intense laser interaction with micrometric fl...
AbstractLaser ablation is widely used for micro-fabrication in electronic industry and multi-physica...
International audienceAblation of Cu and Al targets has been performed with 170 fs laser pulses in t...
The peak temperature in the corona of plasma ejected by a laser-irradiated slab is discussed in term...
Many laser ablation applications such as laser drilling and micromachining generate cavity structur...
Ablation of metal targets by femtosecond laser pulses is studied numerically by using a one-dimensio...
For this laser output to be optimized to the requirements of the workpiece the behaviour of the irra...
The use of copper vapour lasers for laser ablation in laser materials processing applications is stu...
The laser irradiation have shown a range of applications from fabricating, melting, and evaporating ...
The laser irradiation have shown a range of applications from fabricating, melting, and evaporating ...
In ultrashort pulse (\u3c10 ps) laser ablation of dielectrics, affected materials are first transfor...
It remains a big challenge to theoretically predict the material removal mechanism in femtosecond la...
Despite extensive studies for many years, the detailed mechanisms of ultrashort laser pulse (USLP)-m...
International audienceAblation of metal targets by femtosecond laser pulses is studied numerically b...
During the last decade, our groups have performed systematic experimental studies on the characteriz...
n this work we investigate electron heating induced by intense laser interaction with micrometric fl...
AbstractLaser ablation is widely used for micro-fabrication in electronic industry and multi-physica...
International audienceAblation of Cu and Al targets has been performed with 170 fs laser pulses in t...
The peak temperature in the corona of plasma ejected by a laser-irradiated slab is discussed in term...
Many laser ablation applications such as laser drilling and micromachining generate cavity structur...
Ablation of metal targets by femtosecond laser pulses is studied numerically by using a one-dimensio...
For this laser output to be optimized to the requirements of the workpiece the behaviour of the irra...
The use of copper vapour lasers for laser ablation in laser materials processing applications is stu...
The laser irradiation have shown a range of applications from fabricating, melting, and evaporating ...
The laser irradiation have shown a range of applications from fabricating, melting, and evaporating ...