We report on experimental results of the fast electron transport in compressed plasmas, created by laser-induced shock propagation in both cylindrical and planar geometry. Two experiments were carried out. The first one was based on the compression of a polyimide cylinder filled with foams of three different initial densities (rho(0)). X-ray and proton radiographies of the target during the compression coupled with hydrodynamic simulations show that the obtained core densities and temperatures range from 2 to 11 g/cm(3) and from 30 to 120 eV, respectively. By studying the K-shell fluorescence from dopant atoms inside the target and from tracer layers situated at both front and rear side of the target ...
Fast ignition requires a precise knowledge of fast electron propagation in a dense hydrogen plas...
Fast ignition requires a precise knowledge of fast electron propagation in a dense hydrogen plas...
Fast ignition requires a precise knowledge of fast electron propagation in a dense hydrogen plas...
We report on experimental results of the fast electron transport in compressed plasmas, created ...
We report on experimental results of the fast electron transport in compressed plasmas, created ...
We report on experimental results of the fast electron transport in compressed plasmas, created ...
We report on experimental results of the fast electron transport in compressed plasmas, created ...
We report on experimental results of the fast electron transport in compressed plasmas, created by l...
We present results from an experimental characterization of fast electron transport in high density ...
We report on X-ray diagnostics results from an experiment on fast electrons propagation in cylindric...
We report on X-ray diagnostics results from an experiment on fast electrons propagation in cylindric...
We report on X-ray diagnostics results from an experiment on fast electrons propagation in cylindric...
We report on X-ray diagnostics results from an experiment on fast electrons propagation in cylindric...
We report on X-ray diagnostics results from an experiment on fast electrons propagation in cylindric...
Fast ignition requires a precise knowledge of fast electron propagation in a dense hydrogen plas...
Fast ignition requires a precise knowledge of fast electron propagation in a dense hydrogen plas...
Fast ignition requires a precise knowledge of fast electron propagation in a dense hydrogen plas...
Fast ignition requires a precise knowledge of fast electron propagation in a dense hydrogen plas...
We report on experimental results of the fast electron transport in compressed plasmas, created ...
We report on experimental results of the fast electron transport in compressed plasmas, created ...
We report on experimental results of the fast electron transport in compressed plasmas, created ...
We report on experimental results of the fast electron transport in compressed plasmas, created ...
We report on experimental results of the fast electron transport in compressed plasmas, created by l...
We present results from an experimental characterization of fast electron transport in high density ...
We report on X-ray diagnostics results from an experiment on fast electrons propagation in cylindric...
We report on X-ray diagnostics results from an experiment on fast electrons propagation in cylindric...
We report on X-ray diagnostics results from an experiment on fast electrons propagation in cylindric...
We report on X-ray diagnostics results from an experiment on fast electrons propagation in cylindric...
We report on X-ray diagnostics results from an experiment on fast electrons propagation in cylindric...
Fast ignition requires a precise knowledge of fast electron propagation in a dense hydrogen plas...
Fast ignition requires a precise knowledge of fast electron propagation in a dense hydrogen plas...
Fast ignition requires a precise knowledge of fast electron propagation in a dense hydrogen plas...
Fast ignition requires a precise knowledge of fast electron propagation in a dense hydrogen plas...