A new class of inertial fusion capsules is presented that combines multishell targets with laser direct drive at low intensity (2.8×10¹⁴ W/cm²) to achieve robust ignition. The targets consist of three concentric, heavy, metal shells, enclosing a volume of tens of μg of liquid deuterium-tritium fuel. Ignition is designed to occur well “upstream” from stagnation, with minimal pusher deceleration to mitigate interface Rayleigh-Taylor growth. Laser intensities below thresholds for laser plasma instability and cross beam energy transfer facilitate high hydrodynamic efficiency (∼10%)
The principal approach to ignition on the National Ignition Facility (NIF) is indirect drive. A sche...
Following the 3.15 MJ fusion milestone at the National Ignition Facility, the further development of...
The goal of demonstrating ignition on the National Ignition Facility (NIF) has motivated a revisit o...
Direct-drive inertial confinement thermonuclear fusion consists in illuminating a shell of cryogenic ...
Thesis (Ph. D.)--University of Rochester. Dept. of Mechanical Engineering, 2008.Relations between st...
Analysis of low initial aspect ratio direct-drive target designs is carried out by varying the implo...
Shock ignition enables high gain at low implosion velocity, reducing ablative Rayleigh-Taylor instab...
We present direct-drive target design studies for the laser mégajoule using two distinct initial asp...
The National Ignition Facility (NIF) at Lawrence Livermore National Laboratory includes a precision ...
The shock ignition approach to inertial confinement fusion offers a potential route to ignition and ...
Demonstration of thermonuclear ignition and gain on a laboratory scale is one of science's grand cha...
The National Ignition Facility (NIF) is a 192 beam Nd-glass laser facility presently under construct...
We present a design of indirect-drive pulse shape for inertial confinement fusion ignition capsules ...
Measurements have been made of the in-flight dynamics of imploding capsules indirectly driven by las...
To reach the pressures and densities required for ignition, it may be necessary to develop an approa...
The principal approach to ignition on the National Ignition Facility (NIF) is indirect drive. A sche...
Following the 3.15 MJ fusion milestone at the National Ignition Facility, the further development of...
The goal of demonstrating ignition on the National Ignition Facility (NIF) has motivated a revisit o...
Direct-drive inertial confinement thermonuclear fusion consists in illuminating a shell of cryogenic ...
Thesis (Ph. D.)--University of Rochester. Dept. of Mechanical Engineering, 2008.Relations between st...
Analysis of low initial aspect ratio direct-drive target designs is carried out by varying the implo...
Shock ignition enables high gain at low implosion velocity, reducing ablative Rayleigh-Taylor instab...
We present direct-drive target design studies for the laser mégajoule using two distinct initial asp...
The National Ignition Facility (NIF) at Lawrence Livermore National Laboratory includes a precision ...
The shock ignition approach to inertial confinement fusion offers a potential route to ignition and ...
Demonstration of thermonuclear ignition and gain on a laboratory scale is one of science's grand cha...
The National Ignition Facility (NIF) is a 192 beam Nd-glass laser facility presently under construct...
We present a design of indirect-drive pulse shape for inertial confinement fusion ignition capsules ...
Measurements have been made of the in-flight dynamics of imploding capsules indirectly driven by las...
To reach the pressures and densities required for ignition, it may be necessary to develop an approa...
The principal approach to ignition on the National Ignition Facility (NIF) is indirect drive. A sche...
Following the 3.15 MJ fusion milestone at the National Ignition Facility, the further development of...
The goal of demonstrating ignition on the National Ignition Facility (NIF) has motivated a revisit o...