We present a review of direct-drive shock ignition studies done as alternative for the Laser Mega-Joule to achieve high thermonuclear gain. One-dimensional analysis of HiPER-like Shock-ignited target designs is presented. It is shown that high gain can be achieved with shock ignition for designs which do not ignite only from the laser compression. Shock ignition is achieved for different targets of the fast ignition family which are driven by an absorbed energy between 100 kJ and 850kJ and deliver thermonuclear energies between 10-130 MJ. Shock-Ignition of Direct-Drive Double-Shell non-cryogenic target is also addressed. 2D results concerning the LMJ irradiation geometry are presented. Few systematic analyses are performed for the fuel asse...
Shock ignition is a laser direct-drive inertial confinement fusion (ICF) scheme in which the stages...
Shock ignition is an approach to direct-drive inertial confinement fusion (ICF) in which the stages ...
An essential element of the HiPER project is the design of high gain targets, compatible with high r...
We present a review of direct-drive shock ignition studies done as alternative for the Laser Mega-Jo...
We present direct-drive target design studies for the laser mégajoule using two distinct initial asp...
Analysis of low initial aspect ratio direct-drive target designs is carried out by varying the implo...
targets. In previous publications we had identified a window in laser parameter space for the igni...
The use of the Laser MegaJoule facility within the shock ignition scheme has been considered. In the...
The use of the Laser MegaJoule facility within the shock ignition scheme has been considered. In the...
Direct-drive inertial confinement thermonuclear fusion consists in illuminating a shell of cryogenic ...
We present direct-drive target design studies for the laser mégajoule using two distinct initial asp...
We present direct-drive target design studies for the laser mégajoule using two distinct initial asp...
Shock ignition enables high gain at low implosion velocity, reducing ablative Rayleigh-Taylor instab...
Basic issues for the design of moderate-gain fast ignition targets at total laser energy of 200–400 ...
Abstract. We present direct-drive target design studies for the laser mégajoule using two distinct i...
Shock ignition is a laser direct-drive inertial confinement fusion (ICF) scheme in which the stages...
Shock ignition is an approach to direct-drive inertial confinement fusion (ICF) in which the stages ...
An essential element of the HiPER project is the design of high gain targets, compatible with high r...
We present a review of direct-drive shock ignition studies done as alternative for the Laser Mega-Jo...
We present direct-drive target design studies for the laser mégajoule using two distinct initial asp...
Analysis of low initial aspect ratio direct-drive target designs is carried out by varying the implo...
targets. In previous publications we had identified a window in laser parameter space for the igni...
The use of the Laser MegaJoule facility within the shock ignition scheme has been considered. In the...
The use of the Laser MegaJoule facility within the shock ignition scheme has been considered. In the...
Direct-drive inertial confinement thermonuclear fusion consists in illuminating a shell of cryogenic ...
We present direct-drive target design studies for the laser mégajoule using two distinct initial asp...
We present direct-drive target design studies for the laser mégajoule using two distinct initial asp...
Shock ignition enables high gain at low implosion velocity, reducing ablative Rayleigh-Taylor instab...
Basic issues for the design of moderate-gain fast ignition targets at total laser energy of 200–400 ...
Abstract. We present direct-drive target design studies for the laser mégajoule using two distinct i...
Shock ignition is a laser direct-drive inertial confinement fusion (ICF) scheme in which the stages...
Shock ignition is an approach to direct-drive inertial confinement fusion (ICF) in which the stages ...
An essential element of the HiPER project is the design of high gain targets, compatible with high r...