supported by National Natural Science Foundation of China (No. 10975158), the National Magnetic Confinenmnt Fusion Research Program of China (Nos. 2009GB106002, 2010GB104005) and in part by the JSPS-CAS Core University program in the field of 'Plasma and Nuclear Fusion'
The edge transport code SOLPS5.0 is used to model edge plasmas in the experi- mental shots on JT-60U and the profiles of the transverse particle and heat transport coefficients D, Xe and Xi along the outer midplane ar...
With consideration of the effects of the atomic process and the sight line direction on the charge exchange re-combination spectroscopy (CXRS), a code used to modify the poloidal CXRS measurement on Tokamak-60 Upgra...
supported in part by the JSPS-CAS Core University Program in the field of Plasma and Nuclear Fusion
Recent experimental progress in JT-60U advanced tokamak research is presented: sustainment of the normalized beta (βN)- 3 in a normal magnetic shear plasma, the bootstrap current fraction (fBs) - 45% in a weak s...
supported in part by the JSPS-CAS Core-University Program in the field of Plasma and Nuclear Fusion
This paper summarizes recent studies of particle balance in long pulse discharges, long-term erosion/deposition and hydrogen retention for carbon divertor tiles, and particle behavior in SOL and divertor plasmas relat...
supported in part by the JSPS-CAS Core University Program in the field of Plasma and NucIear Fusion;also supported by the Grant-in-Aid for Young Scientists(B)of MEXT Japan
Results from stabilization of neoclassical tearing modes (NTMs) in JT-60U are described. NTM stabilization and confinement improvement have been demonstrated by employing a real-time NTM stabilization system, where ...
Recent results of JT-60U towards establishment of physics basis for ITER andadvanced tokamak operation are presented. Progress in high integrated performance is achieved withimprovement of N-NB and ECRF heating system...