Understanding shielding cross-effects is a prerequisite for maximal power-specific nanosecond laser ablation in liquids (LAL). However, discrimination between cavitation bubble (CB), nanoparticle (NP), and shielding, e.g., by the plasma or a transient vapor layer, is challenging. Therefore, CB imaging by shadowgraphy is performed to better understand the plasma and laser beam-NP interaction during LAL. By comparing the fluence-dependent CB volume for ablations performed with 1 ns pulses with reports from the literature, we find larger energy-specific CB volumes for 7 ns-ablation. The increased CB for laser ablation with higher ns pulse durations could be a first explanation of the efficiency decrease reported for these laser systems having ...
Experiments of collinear Double Pulse Laser Ablation in Liquid (DP-LAL) were carried out for studyin...
International audienceLaser ablation (LA) is one of simple and versatile techniques for synthesis of...
International audienceNanoparticle formation by laser ablation in liquids is studied numerically. We...
In this paper, emission spectroscopy and fast imaging surveys during pulsed laser ablation in liquid...
The laser induced plasma during the nanosecond Pulsed Laser Ablation in Liquid (PLAL) plays a crucia...
In the last decade Pulsed Laser Ablation in Liquids (PLAL) has been widely investigated from the fun...
Pulsed laser ablation in liquid (PLAL) is gradually becoming an attractive approach for nanomaterial...
Although the first nanoseconds to microseconds rule the resulting process yield of laser ablation in...
In this work the effects of the pressure between 1–150 Bar on pulsed laser ablation in liquids (PLAL...
In this work, the impact of the cavitation bubble on a plasma emission produced after the interactio...
Using wires of defined diameters instead of a planar target for pulsed laser ablation in liquid resu...
Laser-induced cavitation (LIC) bubbles and the shockwaves they form upon collapse are destructive to...
To scale-up pulsed laser ablation in liquids for nanoparticle synthesis, we combine two promising ap...
In this work, the dynamics of multiple cavitation bubbles produced by femtosecond laser ablation of ...
We use a state-of-the-art, ultrafast camera to probe the nanosecond pulse laser ablation of a metall...
Experiments of collinear Double Pulse Laser Ablation in Liquid (DP-LAL) were carried out for studyin...
International audienceLaser ablation (LA) is one of simple and versatile techniques for synthesis of...
International audienceNanoparticle formation by laser ablation in liquids is studied numerically. We...
In this paper, emission spectroscopy and fast imaging surveys during pulsed laser ablation in liquid...
The laser induced plasma during the nanosecond Pulsed Laser Ablation in Liquid (PLAL) plays a crucia...
In the last decade Pulsed Laser Ablation in Liquids (PLAL) has been widely investigated from the fun...
Pulsed laser ablation in liquid (PLAL) is gradually becoming an attractive approach for nanomaterial...
Although the first nanoseconds to microseconds rule the resulting process yield of laser ablation in...
In this work the effects of the pressure between 1–150 Bar on pulsed laser ablation in liquids (PLAL...
In this work, the impact of the cavitation bubble on a plasma emission produced after the interactio...
Using wires of defined diameters instead of a planar target for pulsed laser ablation in liquid resu...
Laser-induced cavitation (LIC) bubbles and the shockwaves they form upon collapse are destructive to...
To scale-up pulsed laser ablation in liquids for nanoparticle synthesis, we combine two promising ap...
In this work, the dynamics of multiple cavitation bubbles produced by femtosecond laser ablation of ...
We use a state-of-the-art, ultrafast camera to probe the nanosecond pulse laser ablation of a metall...
Experiments of collinear Double Pulse Laser Ablation in Liquid (DP-LAL) were carried out for studyin...
International audienceLaser ablation (LA) is one of simple and versatile techniques for synthesis of...
International audienceNanoparticle formation by laser ablation in liquids is studied numerically. We...