O. Naito
Japan Atomic Energy Agency
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Publication
Featured researches published by O. Naito.
Nuclear Fusion | 2009
T. Suzuki; N. Oyama; A. Isayama; Yoshiteru Sakamoto; T. Fujita; S. Ide; Y. Kamada; O. Naito; M. Sueoka; Shinichi Moriyama; M. Hanada
Fully non-inductive discharge having a relaxed current profile and a high bootstrap current fraction fBS = 0.5 has been realized in the high-βp ELMy H-mode discharge with weak magnetic-shear having q95 = 5.8, qmin = 2.1 and q(0) = 2.4, where qmin and q(0) are the safety factor q at the minimum and the plasma centre, respectively. The rest of the plasma current is externally driven by neutral beams and lower-hybrid waves. The safety factor profile evaluated by the motional Stark effect diagnostic is kept unchanged for 0.7 s at the end of the full current drive (CD) sustainment for 2 s (1.5 times the current relaxation time τR). The loop voltage profile is spatially uniform at 0 V at the end of the sustainment. This demonstration shows, for the first time, that the steady sustainment of full-CD plasma is possible at high fBS = 0.5 and reasonably low q95 = 5.8 regime and is stably controlled by appropriate external current drivers. On the other hand, when the combination of bootstrap current and externally driven current does not match the steady current profile, a slight change in the current profile due to current relaxation resulted in the appearance of magnetohydrodynamic instability, e.g. neo-classical tearing mode, in a high-beta plasma. This discharge clarifies the importance of the demonstration of steady current profile developed here. These discharges contribute to the ITER steady-state operation scenario development.
Journal of Physics: Conference Series Volume 227#R##N#2010-14th International Symposium on Laser-Aided Plasma Diagnostics (LAPD14) | 2010
T. Hatae; John Howard; N Ebizuka; Hidetsugu Yoshida; H Fujita; K Narihara; I Yamada; H Funaba; Yoichi Hirano; Haruhisa Koguchi; S Kajita; O. Naito
We have been studied the advanced Thomson scattering diagnostics from viewpoints of new concepts, laser technology and spectrum analysis. This paper summarizes results of development on technologies for advanced Thomson scattering diagnostics.
Fusion Engineering and Design | 2009
Shin Kajita; T. Hatae; O. Naito
symposium on fusion technology | 2015
Paolo Innocente; Paolo Barbato; J. Farthing; Gerardo Giruzzi; S. Ide; Frédéric Imbeaux; E. Joffrin; Y. Kamada; G. Kühner; O. Naito; H. Urano; M. Yoshida
Fusion Engineering and Design | 2015
G. De Tommasi; G. Manduchi; D.G. Muir; S. Ide; O. Naito; H. Urano; S. Clement-Lorenzo; N. Nakajima; T. Ozeki; F. Sartori
Fusion Engineering and Design | 2008
Y. Kawamata; O. Naito; K. Kiyono; Kiyoshi Itami; Toshiyuki Totsuka; H. Akasaka; M. Sueoka; T. Sato; T. Oshima; S. Sakata; Masayasu Sato; H. Takenaga; T. Suzuki; N. Oyama; M. Takechi; T. Ozeki; Y. Kamada; Kenichi Kurihara
Fusion Engineering and Design | 2018
J. Farthing; T. Ozeki; S. Clement Lorenzo; N. Nakajima; F. Sartori; G. De Tommasi; G. Manduchi; P. Barbato; A. Rigoni; V. Vitale; G. Giruzzi; Massimo Mattei; A. Mele; F. Imbeaux; J.-F. Artaud; F. Robin; J. Noe; E. Joffrin; A. Hynes; O. Hemming; M. Wheatley; S. O’hira; S. Ide; Y. Ishii; M. Matsukawa; H. Kubo; T. Totsuka; H. Urano; O. Naito; N. Hayashi
11th IAEA Technical Meeting on Control, Data Acquisition and Remote Participation for Fusion Experiments | 2017
J. Farthing; T. Ozeki; S. Clement; N. Nakajima; F. Sartori; G. De Tommasi; G. Manduchi; P. Barbato; A. Rigoni; V. Vitale; G. Giruzzi; Massimo Mattei; A. Mele; F. Imbeaux; J.-F. Artaud; F. Robin; E. Joffrin; A. Hynes; O. Hemming; M. Wheatley; S. Ohira; S. Ide; Y. Ishii; Matsukawa; H. Kubo; T. Totsuka; H. Urano; O. Naito; N. Hayashi; Y. Miyata
Archive | 2015
M. Honda; Nobuhiko Hayashi; N. Aiba; Mitsunori Toma; Akinobu Matsuyama; O. Naito; Shizuo Inoue; Emi Narita; Katsuhiro Shimizu; S. Ide; Masatoshi Yagi
Fusion Engineering and Design | 2015
O. Naito
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National Institute of Advanced Industrial Science and Technology
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