Production and confinement characteristics of ICRF-accelerated energetic ions in JT-60U negative-shear plasmas

Citation
Y. Kusama et al., Production and confinement characteristics of ICRF-accelerated energetic ions in JT-60U negative-shear plasmas, PLASMA PHYS, 41(5), 1999, pp. 625-643
Citations number
27
Categorie Soggetti
Physics
Journal title
PLASMA PHYSICS AND CONTROLLED FUSION
ISSN journal
07413335 → ACNP
Volume
41
Issue
5
Year of publication
1999
Pages
625 - 643
Database
ISI
SICI code
0741-3335(199905)41:5<625:PACCOI>2.0.ZU;2-C
Abstract
Characteristics of energetic ion tail formation during the second-harmonic ion cyclotron range of frequency (2 omega(CH) ICRF) heating and confinement of tail ions were investigated in negative magnetic shear plasmas on JT-60 U. Charge-exchange neutral particle measurements show significantly lower t ail temperature in negative-shear plasmas than those in positive-shear plas mas. The tail temperature in negative-shear plasmas increases with plasma c urrent and shows improvement of energetic ion confinement. Charge-exchange neutral fluxes are also lower in negative-shear plasmas than in positive-sh ear plasmas. Meanwhile, tail ion stored energy is comparable between negati ve- and positive-shear plasmas. In order to understand these experimental r esults, simple modelled calculations were carried out with an orbit-followi ng Monte Carlo (OFMC) code. The model calculations suggest that the ICRF po wer absorption is dominant near the 2 omega(CH) resonance in the negative-s hear plasma and in the low-field side away from the 2 omega(CH) resonance i n the positive-shear plasma. A larger scale length of pressure profile in t he negative-shear plasma compensates for a lower density of tail ions than that in the positive-shear plasma. Accordingly, negative-shear plasmas can contain comparable stored energy of energetic tail ions to positive-shear p lasmas.