Dense titanium plasma has been heated to an electron temperature up to 1300 eV with a 100 TW, high intensity short-pulse laser. The experiments were conducted using Ti foils (5 μm thick) sandwiched between layers of either aluminum (1 or 2 μm thick) or plastic (2 μm thick) to prevent the effects of prepulse. Targets of two different sizes, i.e., 250 × 250 μm 2 and 1×1 mm2 were used. Spectral measurements of the Ti inner-shell emission, in the region between 4 and 5 keV, were taken from, the front-side (i.e., the laser illuminated side) of the target. The data show large shifts in the Kα emission from open-shell ions, suggesting bulk heating of the sample at near solid density, which was largest for reduced mass targets. Comparison with coll...
Shock waves generated by laser-driven ablation in solids have provided a great opportunity for the s...
In the present study, the emission spectrum of titanium produced from laser induced plasma has been ...
International audienceWe use a comprehensive model to investigate the interaction of ultraviolet nan...
Dense titanium plasma has been heated to an electron temperature up to 1300 eV with a 100 TW, high i...
Relativistic short pulse laser matter interactions are of great interest in the area of high energy ...
Warm dense conditions in titanium foils irradiated with intense femtosecond laser pulses are diagnos...
We studied the induced plasma heating in three different kinds of targets: mass limited, foam target...
International audienceBeams of fast electrons have been generated from the ultra-intense laser inter...
In a recent experimental campaign, we used laser-accelerated relativistic hot electrons to ensure he...
Warm dense conditions in titanium foils irradiated with intense femtosecond laser pulses are diagnos...
Shock waves generated by laser-driven ablation in solids have provided a great opportunity for the s...
In the present study, the emission spectrum of titanium produced from laser induced plasma has been ...
International audienceWe use a comprehensive model to investigate the interaction of ultraviolet nan...
Dense titanium plasma has been heated to an electron temperature up to 1300 eV with a 100 TW, high i...
Relativistic short pulse laser matter interactions are of great interest in the area of high energy ...
Warm dense conditions in titanium foils irradiated with intense femtosecond laser pulses are diagnos...
We studied the induced plasma heating in three different kinds of targets: mass limited, foam target...
International audienceBeams of fast electrons have been generated from the ultra-intense laser inter...
In a recent experimental campaign, we used laser-accelerated relativistic hot electrons to ensure he...
Warm dense conditions in titanium foils irradiated with intense femtosecond laser pulses are diagnos...
Shock waves generated by laser-driven ablation in solids have provided a great opportunity for the s...
In the present study, the emission spectrum of titanium produced from laser induced plasma has been ...
International audienceWe use a comprehensive model to investigate the interaction of ultraviolet nan...