Analysis of low initial aspect ratio direct-drive target designs is carried out by varying the implosion velocity and the fuel mass. Starting from two different spherical targets with a given 300?g-DT mass, optimization of laser pulse and drive power allows to obtain a set of target seeds referenced by their peak implosion velocities and initial aspect ratio (A = 3 and A = 5). Self-ignition is achieved with higher implosion velocity for A = 5-design than for A = 3-design. Then, rescaling is done to extend the set of designs to a huge amount of mass, peak kinetic energies and peak areal densities. Self-ignition kinetic energy threshold Ek is characterized by a dependance of Ek ? v? with ?-values which depart from self-ignition models. Nevert...
A new class of inertial fusion capsules is presented that combines multishell targets with laser dir...
targets. In previous publications we had identified a window in laser parameter space for the igni...
Thesis (Ph. D.)--University of Rochester. Department of Physics and Astronomy, 2017.Direct laser-dri...
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...
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...
Abstract. We present direct-drive target design studies for the laser mégajoule using two distinct i...
We present a review of direct-drive shock ignition studies done as alternative for the Laser Mega-Jo...
We present a review of direct-drive shock ignition studies done as alternative for the Laser Mega-Jo...
Thesis (Ph. D.)--University of Rochester. Dept. of Mechanical Engineering, 2008.Relations between st...
Shock ignition is a laser direct-drive inertial confinement fusion (ICF) scheme in which the stages...
Basic issues for the design of moderate-gain fast ignition targets at total laser energy of 200–400 ...
Shock ignition enables high gain at low implosion velocity, reducing ablative Rayleigh-Taylor instab...
Shock ignition [1] is a laser direct-drive inertial confinement fusion scheme, in which the stages...
A new class of inertial fusion capsules is presented that combines multishell targets with laser dir...
targets. In previous publications we had identified a window in laser parameter space for the igni...
Thesis (Ph. D.)--University of Rochester. Department of Physics and Astronomy, 2017.Direct laser-dri...
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...
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...
Abstract. We present direct-drive target design studies for the laser mégajoule using two distinct i...
We present a review of direct-drive shock ignition studies done as alternative for the Laser Mega-Jo...
We present a review of direct-drive shock ignition studies done as alternative for the Laser Mega-Jo...
Thesis (Ph. D.)--University of Rochester. Dept. of Mechanical Engineering, 2008.Relations between st...
Shock ignition is a laser direct-drive inertial confinement fusion (ICF) scheme in which the stages...
Basic issues for the design of moderate-gain fast ignition targets at total laser energy of 200–400 ...
Shock ignition enables high gain at low implosion velocity, reducing ablative Rayleigh-Taylor instab...
Shock ignition [1] is a laser direct-drive inertial confinement fusion scheme, in which the stages...
A new class of inertial fusion capsules is presented that combines multishell targets with laser dir...
targets. In previous publications we had identified a window in laser parameter space for the igni...
Thesis (Ph. D.)--University of Rochester. Department of Physics and Astronomy, 2017.Direct laser-dri...