K. Mima, H. Azechi, H. Fujita, N. Izumi,
T. Jitsuno, Y. Kato, T. Kanabe, Y. Kitagawa,
R. Kodama, N. Miyanaga, M. Nakai, M. Nakatsuka,
S. Nakai, H. Nagatomo, T. Norimatsu, K. Nishihara,
H. Nishimura, H. Shiraga, H. Takabe and T. Yamanaka
Institute of Laser Engineering, Osaka University, 2-6 Yamada-oka, Suita, Osaka 565-0871, Japan
Institute of Laser Technology, 1-8-4 Utsubohonmachi, Nishiku,
Osaka, 550-0004, Japan
Osaka Institute of Technology, Omiya, Asahi-ku, Osaka 535-0002,
Japan
Abstract. Reviewed are the recent achievements of the researches on
hydrodynamics, hybrid implosion, fast ignitor and so on. As for
hydrodynamics, initial imprint as a seed of the implosion nonuniformity and
hydrodynamic instabilities have been investigated. In the hybrid implosion
experiments, it is found that the X-ray pre-irradiation and the low density
foam layer mitigate the initial imprint. In the research of fast ignitor,
investigated are hole boring, high energy electron generation and transport,
inward high energy ion generation and related neutron yield and so on.
Finally, future prospects of laser fusion research at ILE, Osaka University
are also discussed.
IAEA 2001