We have studied particle acceleration in different nanostructured targets irradiated by high intensity laser pulses of high contrast. We find that the maximum energy of emitted particles and their directionality is significantly enhanced in the case of nanostructured targets with respect to plane targets. We have studied theoretically in detail the generation and propagation of fast electrons in nanowire targets. Such targets exhibit an extraordinary high conversion efficiency of laser energy into electron kinetic energy. We observe guiding of electron bunches along the wires. Results from theory and simulation compare reasonably well with the experimental data
Laser interaction with a nanobrush target plasma is investigated at the SILEX-I laser facility [X. F...
Conventional solid-density laser-plasma targets quickly ionize to make a plasma mirror, which largel...
International audienceThe interaction of low intensity laser pulses with metal nano-structures is at...
We have studied particle acceleration in different nanostructured targets irradiated by high intensi...
International audienceThe generation of energetic electron bunches by the interaction of a short, ul...
International audienceThe generation of energetic electrons by the interaction of a short laser puls...
Bright, energetic, and directional electron bunches are generated through efficient energy transfer ...
A laser-driven particle accelerator based on plasmonic nanoantennas is proposed and analyzed. The co...
The interaction of light with nanometer-sized solids provides the means of focusing optical radiatio...
The generation of ultrastrong attosecond pulses through laser-plasma interactions offers the opportu...
Laser-driven proton acceleration is a growing field of interest in the high-power laser community. O...
The use of targets with surface structures for laser-driven particle acceleration has potential to s...
We report on experimental results in a new regime of relativistic light-matter interaction employing...
Laser interaction with a nanobrush target plasma is investigated at the SILEX-I laser facility [X. F...
Conventional solid-density laser-plasma targets quickly ionize to make a plasma mirror, which largel...
International audienceThe interaction of low intensity laser pulses with metal nano-structures is at...
We have studied particle acceleration in different nanostructured targets irradiated by high intensi...
International audienceThe generation of energetic electron bunches by the interaction of a short, ul...
International audienceThe generation of energetic electrons by the interaction of a short laser puls...
Bright, energetic, and directional electron bunches are generated through efficient energy transfer ...
A laser-driven particle accelerator based on plasmonic nanoantennas is proposed and analyzed. The co...
The interaction of light with nanometer-sized solids provides the means of focusing optical radiatio...
The generation of ultrastrong attosecond pulses through laser-plasma interactions offers the opportu...
Laser-driven proton acceleration is a growing field of interest in the high-power laser community. O...
The use of targets with surface structures for laser-driven particle acceleration has potential to s...
We report on experimental results in a new regime of relativistic light-matter interaction employing...
Laser interaction with a nanobrush target plasma is investigated at the SILEX-I laser facility [X. F...
Conventional solid-density laser-plasma targets quickly ionize to make a plasma mirror, which largel...
International audienceThe interaction of low intensity laser pulses with metal nano-structures is at...