In inertial fusion shock ignition, separation of the stages of fuel compression and hot spot creation introduces some degree of design flexibility. A lower implosion velocity can be compensated for by a more intense ignition pulse. Flexibility increases with target (and driver) size and allows for a compromise between energy gain and risk reduction. Having designed a reference ignition target, we have developed an analytical model for (up)-scaling targets as a function of laser energy, while keeping under control parameters related to hydro- and plasma instabilities. Detailed one-dimensional simulations confirm the model and generate gain curves. Options for increasing target robustness are also discussed. The previous results apply to UV l...
Shock ignition is a recently proposed approach to inertial confinement thermonuclear fusion (ICF). A...
We studied a variety of targets to be driven by ion beams or lasers in the past year. In order to re...
Essential ingredients of inertial confinement fusion (ICF) are fuel compression to very high density...
In inertial fusion shock ignition, separation of the stages of fuel compression and hot spot creatio...
Standard direct-drive inertial confinement fusion requires UV light irradiation in order to achieve ...
Shock-ignited inertial fusion targets are studied by one dimensional and two-dimensional numerical s...
Shock-ignited inertial fusion targets are studied by one dimensional and two-dimensional numerical s...
Shock ignition is a laser direct-drive inertial confinement fusion (ICF) scheme in which the stages...
Shock ignition [1] is a laser direct-drive inertial confinement fusion scheme, in which the stages...
targets. In previous publications we had identified a window in laser parameter space for the igni...
Shock-ignition (SI) is a direct-drive laser fusion scheme, in which the fuel is imploded at velocity...
Shock ignition (SI)[1] is a laser direct-drive Inertial Confinement Fusion scheme in which fuel comp...
The Shock Ignition (SI) scheme [1] offers to reduce the laser requirements by relaxing the implosion...
Basic issues for the design of moderate-gain fast ignition targets at total laser energy of 200–400 ...
Shock-ignition (SI) is a direct-drive laser fusion scheme, in which the fuel is imploded at velocity...
Shock ignition is a recently proposed approach to inertial confinement thermonuclear fusion (ICF). A...
We studied a variety of targets to be driven by ion beams or lasers in the past year. In order to re...
Essential ingredients of inertial confinement fusion (ICF) are fuel compression to very high density...
In inertial fusion shock ignition, separation of the stages of fuel compression and hot spot creatio...
Standard direct-drive inertial confinement fusion requires UV light irradiation in order to achieve ...
Shock-ignited inertial fusion targets are studied by one dimensional and two-dimensional numerical s...
Shock-ignited inertial fusion targets are studied by one dimensional and two-dimensional numerical s...
Shock ignition is a laser direct-drive inertial confinement fusion (ICF) scheme in which the stages...
Shock ignition [1] is a laser direct-drive inertial confinement fusion scheme, in which the stages...
targets. In previous publications we had identified a window in laser parameter space for the igni...
Shock-ignition (SI) is a direct-drive laser fusion scheme, in which the fuel is imploded at velocity...
Shock ignition (SI)[1] is a laser direct-drive Inertial Confinement Fusion scheme in which fuel comp...
The Shock Ignition (SI) scheme [1] offers to reduce the laser requirements by relaxing the implosion...
Basic issues for the design of moderate-gain fast ignition targets at total laser energy of 200–400 ...
Shock-ignition (SI) is a direct-drive laser fusion scheme, in which the fuel is imploded at velocity...
Shock ignition is a recently proposed approach to inertial confinement thermonuclear fusion (ICF). A...
We studied a variety of targets to be driven by ion beams or lasers in the past year. In order to re...
Essential ingredients of inertial confinement fusion (ICF) are fuel compression to very high density...