High-power CO2 laser driven inertial confinement fusion.
Hiroyuki Daido, K. Mima, Oneyoshi KITAGAWA, Sadao Nakai, Chiyoe Yamanaka
Abstract
Open-access reader
Hiroyuki Daido, K. Mima, Oneyoshi KITAGAWA, Sadao Nakai, Chiyoe Yamanaka
Abstract
Open-access reader
The CO2 laser driven implosion study is reported. We observed the high energy truncation in the hot electron energy distribution of the Cannonball target with inner pellet irradiation type. The results of implosion experiment agree with the simulation result including the high energy tail truncation. The implosion properties of 100 kJ laser irradiated pellet are also presented.
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The CO2 laser driven implosion study is reported. We observed the high energy truncation in the hot electron energy distribution of the Cannonball target with inner pellet irradiation type. The results of implosion experiment agree with the simulation result including the high energy tail truncation. The implosion properties of 100 kJ laser irradiated pellet are also presented.
Key concepts: Implosion, Inertial confinement fusion, Laser, Irradiation, Truncation (statistics), Fusion power, Fusion, Materials science