Advanced ignition concepts, such as fast ignition and shock ignition, are being investigated at the Omega Laser Facility. Integrated fast-ignition experiments with room-temperature re-entrant cone targets have begun, using 18 kJ of 351 nm drive energy to implode empty 40 νm thick CD shells, followed by 1.0 kJ of 1053 nm wavelength, short-pulse energy. Short pulses of 10 ps width have irradiated the inside of a hollow gold re-entrant cone at the time of peak compression. A threefold increase in the time-integrated, 2 to 7 keV x-ray emission was observed with x-ray pinhole cameras, indicating that energy is coupled from the short-pulse laser into the core by fast electrons. In shock-ignition experiments, spherical plastic-shell targets were c...
We review the present status of fast ignition research. Since 1997, the fast ignition experiment and...
Shock ignition, a new concept for igniting thermonuclear fuel, offers the potential for a near-term ...
Marshall Rosenbluth’s extensive contributions included seminal analysis of the physics of the laser-...
Advanced ignition concepts, such as fast ignition and shock ignition, are being investigated at the ...
A comprehensive scientific program is being pursued at LLE to explore the physics of fast ignition. ...
Shock-ignition experiments with peak laser intensities of ∼8 × 1015 W/cm2 were performed. D2-filled ...
Recent progress in direct-drive cryogenic implosions on the OMEGA Laser Facility [T. R. Boehly et al...
In preparation of the first ignition attempts on the Laser Mégajoule (LMJ), an experimental program ...
Recent progress in the physics of fast ignition of fusion targets is reviewed here. Fundamental stud...
High-convergence polar-drive experiments are being conducted on OMEGA [T. R. Boehly et al., Opt. Com...
2 Beam configurations were optimized for shock ignition experiments at both the National Ignition Fa...
A series of direct-drive implosion experiments, using room-temperature, gas-filled CH targets, are p...
This report investigates the effectiveness of laser-driven fusion when cone-in-shell targets are use...
Direct-drive inertial confinement fusion (ICF) is expected to demonstrate high gain on the National...
The fast ignition realization experiment (FIREX) project is progressing. The new short pulse laser s...
We review the present status of fast ignition research. Since 1997, the fast ignition experiment and...
Shock ignition, a new concept for igniting thermonuclear fuel, offers the potential for a near-term ...
Marshall Rosenbluth’s extensive contributions included seminal analysis of the physics of the laser-...
Advanced ignition concepts, such as fast ignition and shock ignition, are being investigated at the ...
A comprehensive scientific program is being pursued at LLE to explore the physics of fast ignition. ...
Shock-ignition experiments with peak laser intensities of ∼8 × 1015 W/cm2 were performed. D2-filled ...
Recent progress in direct-drive cryogenic implosions on the OMEGA Laser Facility [T. R. Boehly et al...
In preparation of the first ignition attempts on the Laser Mégajoule (LMJ), an experimental program ...
Recent progress in the physics of fast ignition of fusion targets is reviewed here. Fundamental stud...
High-convergence polar-drive experiments are being conducted on OMEGA [T. R. Boehly et al., Opt. Com...
2 Beam configurations were optimized for shock ignition experiments at both the National Ignition Fa...
A series of direct-drive implosion experiments, using room-temperature, gas-filled CH targets, are p...
This report investigates the effectiveness of laser-driven fusion when cone-in-shell targets are use...
Direct-drive inertial confinement fusion (ICF) is expected to demonstrate high gain on the National...
The fast ignition realization experiment (FIREX) project is progressing. The new short pulse laser s...
We review the present status of fast ignition research. Since 1997, the fast ignition experiment and...
Shock ignition, a new concept for igniting thermonuclear fuel, offers the potential for a near-term ...
Marshall Rosenbluth’s extensive contributions included seminal analysis of the physics of the laser-...