Central impurity toroidal rotation has been observed in Alcator C-Mod ICRF heated plasmas, from the Doppler shifts of argon X ray lines. Rotation velocities of up to 1.3 × 105 m/s in the co-current direction have been observed in H mode discharges with no direct momentum input. There is a strong correlation betweenthe increase in the central impurity rotation velocity and the increase in the plasma stored energy, induced by ICRF heating, although other factors may be involved. This implies a close associationbetween energy and momentum confinement. Co-current rotation is also observedduring purely ohmic H modes. In otherwise similar discharges with the same stored energy increase, plasmaswith lower current rotate faster. For hydrogen minority (D(H)) heating, plasmas with the highestrotation have an H/D ratio between 5 and 10% and have the resonance locationin the inner half of the plasma, i.e. in the same conditions that are conducive to the best ICRFabsorption and heating. Comparisons with neoclassical theoryindicate that the ion pressure gradient is an unimportant contributor to thecentral impurity rotation and the presence of a substantial core radial electric field is inferred during the ICRF pulse. An inward shift of ions induced by ICRF waves could give rise to a non-ambipolar electric field in theplasma core.
Spatially resolved toroidal plasma rotation with ICRF on JET