Laser ablation has been widely used for a variety of applications. Since the mechanisms for ablation are strongly dependent on the photoexcitation level, so called cold material processing has relied on the use of high-peak-power laser fluences for which nonthermalprocesses become dominant; often reaching the universal threshold for plasma formation of $\sim$ 1 J cm$^{-2}$ in most solids. Here we show single-shot time-resolved femtosecond electron diffraction, femtosecond optical reflectivity and ion detection experiments to study the evolution of the ablation process that follows femtosecond 400 nm laser excitation in crystalline sodium chloride, caesium iodide and potassium iodide. The phenomenon in this class of materials occurs well bel...
The mechanism of ablation of solids by intense femtosecond laser pulses is described in an explicit ...
Ultrafast time resolved microscopy has been used to study the dynamics of femtosecond laser induced ...
We report on time-resolved measurements of the plasma evolution during metal ablation with ultrashor...
Laser ablation has been widely used for a variety of applications. Since the mechanisms for ablation...
Laser ablation has been widely used for a variety of applications. Since the mechanisms for ablation...
International audienceTime-resolved microscopy study of ablation with femtosecond laser pulses in ch...
We study the expansion dynamics of super-heated material during ultra-fast laser ablation of water a...
We present an overview of our systematic studies of the surface modifications resulting from the int...
Metals have three ablation threshold fluences (high,middle and low-threshold fluence, here called) f...
International audienceParticle emission from ultrafast laser irradiated solids is a longstanding top...
We investigated the process of ultrafast laser ablation of metallic targets induced by a pair of ide...
8 pags., 6 figs.The physical origin of material removal in dielectrics upon femtosecond laser pulse ...
We have investigated the emission of positive ions from metallic targets irradiated with intense, ul...
Studies of materials under extreme conditions have relevance to a broad area of research, including ...
The mechanism of ablation of solids by intense femtosecond laser pulses is described in an explicit ...
Ultrafast time resolved microscopy has been used to study the dynamics of femtosecond laser induced ...
We report on time-resolved measurements of the plasma evolution during metal ablation with ultrashor...
Laser ablation has been widely used for a variety of applications. Since the mechanisms for ablation...
Laser ablation has been widely used for a variety of applications. Since the mechanisms for ablation...
International audienceTime-resolved microscopy study of ablation with femtosecond laser pulses in ch...
We study the expansion dynamics of super-heated material during ultra-fast laser ablation of water a...
We present an overview of our systematic studies of the surface modifications resulting from the int...
Metals have three ablation threshold fluences (high,middle and low-threshold fluence, here called) f...
International audienceParticle emission from ultrafast laser irradiated solids is a longstanding top...
We investigated the process of ultrafast laser ablation of metallic targets induced by a pair of ide...
8 pags., 6 figs.The physical origin of material removal in dielectrics upon femtosecond laser pulse ...
We have investigated the emission of positive ions from metallic targets irradiated with intense, ul...
Studies of materials under extreme conditions have relevance to a broad area of research, including ...
The mechanism of ablation of solids by intense femtosecond laser pulses is described in an explicit ...
Ultrafast time resolved microscopy has been used to study the dynamics of femtosecond laser induced ...
We report on time-resolved measurements of the plasma evolution during metal ablation with ultrashor...