Nanostructured and microstructured thin foils have been fabricated and used experimentally as targets to manipulate the spatial profile of proton bunches accelerated through the interaction with high intensity laser pulses (6x1019W/cm2). Monolayers of polystyrene nanospheres were placed on the rear surfaces of thin plastic targets to improve the spatial homogeneity of the accelerated proton beams. Moreover, thin targets with grating structures of various configurations on their rear sides were used to modify the proton beam divergence. Experimental results are presented, discussed, and supported by 3D particle-in-cell numerical simulations
A high-energy, high-yield proton beam with a good homogeneous profile has been generated from a nano...
International audienceAn efficient way to enhance laser-driven proton acceleration is by increasing ...
High intensity laser-driven proton acceleration from micromachined targets is studied experimentally...
Nanostructured and microstructured thin foils have been fabricated and used experimentally as target...
Nanostructured and microstructured thin foils have been fabricated and used experimentally as target...
Nanostructured and microstructured thin foils have been fabricated and used experimentally as target...
Nano and micro structured thin (μ m-scale) foils were designed, fabricated and irradiated with the h...
Nano and micro structured thin (μ m-scale) foils were designed, fabricated and irradiated with the h...
Nano and micro structured thin (μ m-scale) foils were designed, fabricated and irradiated with the h...
Nano and micro structured thin (μ m-scale) foils were designed, fabricated and irradiated with the h...
Nano and micro structured thin (μ m-scale) foils were designed, fabricated and irradiated with the h...
The spatial energy distributions of beams of protons accelerated by ultrahigh intensity (>10^19 W/cm...
The spatial energy distributions of beams of protons accelerated by ultrahigh intensity (> 10(19) W/...
A high-energy, high-yield proton beam with a good homogeneous profile has been generated from a nano...
Structured solid targets are widely investigated to increase the energy absorption of high-power las...
A high-energy, high-yield proton beam with a good homogeneous profile has been generated from a nano...
International audienceAn efficient way to enhance laser-driven proton acceleration is by increasing ...
High intensity laser-driven proton acceleration from micromachined targets is studied experimentally...
Nanostructured and microstructured thin foils have been fabricated and used experimentally as target...
Nanostructured and microstructured thin foils have been fabricated and used experimentally as target...
Nanostructured and microstructured thin foils have been fabricated and used experimentally as target...
Nano and micro structured thin (μ m-scale) foils were designed, fabricated and irradiated with the h...
Nano and micro structured thin (μ m-scale) foils were designed, fabricated and irradiated with the h...
Nano and micro structured thin (μ m-scale) foils were designed, fabricated and irradiated with the h...
Nano and micro structured thin (μ m-scale) foils were designed, fabricated and irradiated with the h...
Nano and micro structured thin (μ m-scale) foils were designed, fabricated and irradiated with the h...
The spatial energy distributions of beams of protons accelerated by ultrahigh intensity (>10^19 W/cm...
The spatial energy distributions of beams of protons accelerated by ultrahigh intensity (> 10(19) W/...
A high-energy, high-yield proton beam with a good homogeneous profile has been generated from a nano...
Structured solid targets are widely investigated to increase the energy absorption of high-power las...
A high-energy, high-yield proton beam with a good homogeneous profile has been generated from a nano...
International audienceAn efficient way to enhance laser-driven proton acceleration is by increasing ...
High intensity laser-driven proton acceleration from micromachined targets is studied experimentally...