Experimental results are reported for two different configurations of laser driven ion acceleration using solid targets with a structured layer on the irradiated side. Two experimental campaigns have been performed exploiting the 100TW 25fs Ti:Sa UHI-100 laser pulse at CEA Saclay. The use of a double plasma mirror allowed a contrast ratio of > 1012 so that the structures of the front surface withstanded the prepulse. ”Foam” targets have been manufactured by depositing a 10 μm nanostructured carbon foam with an average density of 1-5 mg/cm3 on a 1 μm thick aluminium foil. At maximum focalization, corresponding to an intensity of 1019 W/cm2. the foam targets gave a maximum proton energy similar to the case of bare aluminium target (about 6 Me...
We report on the development of foam-based double-layer targets (DLTs) for laser-driven ion accelera...
We report on the development of foam-based double-layer targets (DLTs) for laser-driven ion accelera...
We report on the development of foam-based double-layer targets (DLTs) for laser-driven ion accelera...
Experimental results are reported for two different configurations of laser driven ion acceleration ...
Experimental results are reported for two different configurations of laser driven ion acceleration ...
Experimental results are reported for two different configurations of laser driven ion acceleration ...
Experimental results are reported for two different configurations of laser driven ion acceleration ...
The experimental feasibility of the laser-driven ion acceleration concept with multi-layered,foam-ba...
International audienceThe experimental feasibility of the laser-driven ion acceleration concept with...
International audienceThe experimental feasibility of the laser-driven ion acceleration concept with...
The experimental feasibility of the laser-driven ion acceleration concept with multi-layered, foam-b...
The experimental feasibility of the laser-driven ion acceleration concept with multi-layered, foam-b...
The experimental feasibility of the laser-driven ion acceleration concept with multi-layered, foam-b...
The experimental feasibility of the laser-driven ion acceleration concept with multi-layered, foam-b...
International audienceThe experimental feasibility of the laser-driven ion acceleration concept with...
We report on the development of foam-based double-layer targets (DLTs) for laser-driven ion accelera...
We report on the development of foam-based double-layer targets (DLTs) for laser-driven ion accelera...
We report on the development of foam-based double-layer targets (DLTs) for laser-driven ion accelera...
Experimental results are reported for two different configurations of laser driven ion acceleration ...
Experimental results are reported for two different configurations of laser driven ion acceleration ...
Experimental results are reported for two different configurations of laser driven ion acceleration ...
Experimental results are reported for two different configurations of laser driven ion acceleration ...
The experimental feasibility of the laser-driven ion acceleration concept with multi-layered,foam-ba...
International audienceThe experimental feasibility of the laser-driven ion acceleration concept with...
International audienceThe experimental feasibility of the laser-driven ion acceleration concept with...
The experimental feasibility of the laser-driven ion acceleration concept with multi-layered, foam-b...
The experimental feasibility of the laser-driven ion acceleration concept with multi-layered, foam-b...
The experimental feasibility of the laser-driven ion acceleration concept with multi-layered, foam-b...
The experimental feasibility of the laser-driven ion acceleration concept with multi-layered, foam-b...
International audienceThe experimental feasibility of the laser-driven ion acceleration concept with...
We report on the development of foam-based double-layer targets (DLTs) for laser-driven ion accelera...
We report on the development of foam-based double-layer targets (DLTs) for laser-driven ion accelera...
We report on the development of foam-based double-layer targets (DLTs) for laser-driven ion accelera...