DocumentCode :
2912583
Title :
Fast neutral particle measurements in LHD and CHS
Author :
Ozaki, Takashi ; Okamura, Shingo ; Bracco, G. ; Moleti, A. ; Tilia, B. ; Sibio, A. ; Sudo, Shunsuke ; Yamada, Hiroyoshi ; Morita, S. ; Akiyama, R. ; Ejiri, A. ; Fujisawa, A. ; Hamada, Yasuhiro ; Hasegawa, Yohei ; Ida, K. ; Idei, Hiroshi ; Iguchi, H. ; Ino
Author_Institution :
Nat. Inst. for Fusion Sci., Nagoya, Japan
fYear :
1996
fDate :
3-5 June 1996
Firstpage :
119
Abstract :
Summary form only. The development of high energy neutral particle measurement system for ion temperature measurements and high energy particle confinement analysis in Large Helical Device (LHD, major radius=3.9 m, average minor radius=0.6 m) is described here. For NBIs, 180 keV hydrogen beams will be used in Phase I of LHD experiment schedule and 360 keV deuterium beams will be used in Phase II. In ICRF heating experiment, the hydrogen and helium-3 will be used as minorities. It is important to observe the pitch angle distribution to investigate the confinement of high energy particles. For this purpose the neutral particle analyzer should have a wide observation energy range above the maximum energy of NBI (or accelerated particle by ICRF heating) and an ability to separate the particle species of hydrogen, deuterium and He-3. The high noise reduction ability for the radiation, especially neutron from DD reaction, is important. We have been improving the time-of-flight (TOF) neutral particle analyzer for LHD which had been developed in ENEA Frascati. The mass rejection factor was improved up to 1/1000 by using a biased diaphragm in front of the stop detector. The fast neutral particle measurement system is constructing now. In Compact Helical System (CHS), the electrostatic neutral particle analyzer (maximum detectable energy of 50 keV hydrogen) is used. We have compared the spectrum obtained from the measurement by a passive method in CHS with that from the calculation by PROCTR code. At the energy range below 1 keV, neutral contribution from the plasma boundary is too large due to the large background neutral density and large charge exchange cross section.
Keywords :
plasma confinement; 1 keV; 180 keV; 360 keV; 50 keV; CHS; Compact Helical System; ENEA Frascati; ICRF heating; LHD; Large Helical Device; PROCTR code; charge exchange cross section; electrostatic neutral particle analyzer; fast neutral particle measurement system; fast neutral particle measurements; high energy neutral particle measurement system; high energy particle confinement analysis; high energy particles; ion temperature measurements; large background neutral density; mass rejection factor; neutral beam injection; neutral particle analyzer; pitch angle distribution; plasma boundary; time-of-flight neutral particle analyzer; Acceleration; Detectors; Deuterium; Heating; Hydrogen; Neutrons; Noise reduction; Particle measurements; Plasma measurements; Temperature measurement;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Plasma Science, 1996. IEEE Conference Record - Abstracts., 1996 IEEE International Conference on
Conference_Location :
Boston, MA, USA
ISSN :
0730-9244
Print_ISBN :
0-7803-3322-5
Type :
conf
DOI :
10.1109/PLASMA.1996.550263
Filename :
550263
Link To Document :
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