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Kawano, Yasunori; Nakano, Tomohide; Asakura, Nobuyuki; Tamai, Hiroshi; Isayama, Akihiko; Kondoh, Takashi; Hatae, Takaki; Takenaga, Hidenobu; Ide, Shunsuke
Purazuma, Kaku Yugo Gakkai-Shi, 81(10), p.743 - 744, 2005/10
Electron density of post-disruption runaway plasmas in JT-60U has been measured by the tangential CO laser interferometer. Increases in electron density after the first drop of runaway plasma current have been observed during a fast termination phase of the runaway plasma. At the second current drop, an increase in electron density with multiple spikes or oscillation with the period of 1 ms has been found. It is suggested that the increased electron density seems to take part in the shorter current decay time after the second current drop.
Hatae, Takaki; Kondoh, Takashi; Naito, Osamu; Nakatsuka, Masahiro*; Yoshida, Hidetsugu*
Proceedings of 12th International Symposium on Laser-Aided Plasma Diagnostics (LAPD-12) (CD-ROM), 6 Pages, 2005/09
no abstracts in English
Yokoyama, Atsushi; Oba, Hironori; Hashimoto, Masashi; Katsumata, Keiichi; Akagi, Hiroshi; Ishii, Takeshi*; Oya, Akio*; Arai, Shigeyoshi*
Applied Physics B, 79(7), p.883 - 889, 2004/11
Times Cited Count:10 Percentile:44.25(Optics)Silicon isotope separation has been done utilizing the Infrared Multiphoton Dissociation of SiF
irradiated with two-frequency CO
laser lights. The two-frequency excitation method improved the separation efficiency with keeping the high enrichment factors. For example, Si
F
with the
Si fraction of 99.4 % was obtained at 40.0 % dissociation of Si
F
after the simultaneous irradiation of 100 pulses with 966.23 cm
photons (0.089 J/cm
) and 954.55 cm
photons (0.92 J/cm
), while 1000 pulses were needed to obtain 99.0 % of
Si at 27.2 % dissociation in the case of single frequency irradiation at 954.55 cm
(0.92 J/cm
). The single-step enrichment factors of
Si and
Si increased with increasing Si
F
pressure. The reason for this enhancement has been discussed in terms of the rotational and vibrational relaxations by collisions with ambient gases.
Kondoh, Takashi; Costley, A. E.*; Sugie, Tatsuo; Kawano, Yasunori; Malaquias, A.*; Walker, C. I.*
Review of Scientific Instruments, 75(10), p.3420 - 3422, 2004/10
Times Cited Count:23 Percentile:71.61(Instruments & Instrumentation)In order to measure the line average electron density on ITER, a CO laser interferometer/polarimeter system is being developed. The design of the interferometer/polarimeter is improved from the previous design, which uses CO
and CO laser, on the basis of experience gained with a dual CO
system on JT-60U in which good reliability was confirmed for both interferometry and polarimetry operation. The performance of the dual CO
laser meets requirements for ITER (accuracy; 1%, time resolution; 1 ms).
Yokoyama, Atsushi; Oba, Hironori; Shibata, Takemasa; Kawanishi, Shunichi*; Sugimoto, Shunichi*; Ishii, Takeshi*; Oya, Akio*; Miyamoto, Yoshiki*; Isomura, Shohei*; Arai, Shigeyoshi*
Journal of Nuclear Science and Technology, 39(4), p.457 - 462, 2002/04
Times Cited Count:3 Percentile:22.77(Nuclear Science & Technology)no abstracts in English
Hatae, Takaki; JT-60 Team
Proceedings of 6th Japan-Australia Workshop on Plasma Diagnostics (CD-ROM), 16 Pages, 2002/00
The diagnostic system of JT-60U is composed of about 50 individual diagnostic devices. Recently, the detailed radial profile measurements of plasma parameters such as electron temperature, electron density, ion temperature, plasma rotation, and plasma current (safety factor q) have been improved. As a result, the understanding of internal structure of plasmas has advanced. In particular, detailed studies of the internal transport barrier could be performed in reversed magnetic shear plasmas. Furthermore, a "current hole" or a nearly zero current density at the plasma center was discovered in JT-60U plasmas by using a motional stark effect (MSE) system. Several diagnostic signal have been linked to actuators such as neutral beam injectors, the gas feed system, and the electron cyclotron heating system establishing the real-time control of electron temperature, neutron yield, radiated power, and electron temperature gradient, and thus improving plasma performance.
Kondoh, Takashi; Lee, S.; Hutchinson, D. P.*; Richards, R. K.*
Review of Scientific Instruments, 72(1), p.1143 - 1146, 2001/01
Times Cited Count:13 Percentile:58.87(Instruments & Instrumentation)no abstracts in English
Nagashima, Akira; Kawano, Yasunori; Hatae, Takaki;
Diagnostics for Experimental Thermonuclear Fusion Reactors, 0, p.235 - 243, 1996/00
no abstracts in English
Ikezoe, Yasumasa; Soga, Takeshi; Suzuki, Kazuya; Ono, Shinichi*
Journal of the Mass Spectometry Society of Japan, 43(5), p.257 - 263, 1995/00
no abstracts in English
Oka, Kiyoshi; Kakudate, Satoshi; Nakahira, Masataka; Tada, Eisuke; Obara, Kenjiro; ; ; ; Shibanuma, Kiyoshi; Seki, Masahiro
JAERI-Tech 94-033, 20 Pages, 1994/11
no abstracts in English
Ikezoe, Yasumasa; Soga, Takeshi; Suzuki, Kazuya; Ono, Shinichi
JAERI-M 90-141, 55 Pages, 1990/09
no abstracts in English
; ; ; Ishikawa, Niro;
Chemical Physics Letters, 99(3), p.221 - 224, 1983/00
Times Cited Count:7 Percentile:31.99(Chemistry, Physical)no abstracts in English
; ; ; Ishikawa, Niro;
Journal of Nuclear Science and Technology, 18(9), p.737 - 738, 1981/00
no abstracts in English