The transport, flow shear, and linear growth rates of microturbulence are studied for a JET plasma with high central q in which an internal transport barrier (ITB) forms and crows to a large radius. The linear microturbulence growth rates of the fastest growing (most unstable) toroidal modes with high toroidal mode number are calculated using the GS2 and FULL gyrokinetic codes. These linear growth rates, gamma(lin) are large, but the flow-shearing rates, Y-ExB (dominated by the toroidal rotation contribution), are also comparably large when and where the ITB exists
Insight into microturbulence and transport in tokamak plasmas is being sought using linear simulatio...
In JET advanced tokamak research mainly focuses on plasmas with internal transport barriers (ITBs), ...
The effect of a toroidal field (TF) ripple on the formation and performance of internal transport ba...
The transport, flow shear, and linear growth rates of microturbulence are studied for a JET plasma w...
The transport, flow shear, and linear growth rates of microturbulence are studied for a Joint Europe...
Linear simulations of plasma microturbulence are used with recent radial profiles of toroidal veloci...
Internal Transport Barriers (ITB's) in tokamak plasmas are a promising way to achieve steady-state p...
At JET the dynamics of internal transport barriers (ITBs) has been explored by trying to decouple th...
Recent experiments with Optimised Shear plasma in JET [1,2] revealed some unusual features of the In...
A linear empirical threshold condition ωExB/γITG>0.68s-0.095 has been found for the onset of the ...
The physics of internal transport barrier (ITB) formation in JET has been investigated using micro-s...
Plasmas with improved confinement by an Internal Transport Barrier (ITB) are considered in the Advan...
This paper reports on the recent studies of toroidal and poloidal momentum transport in JET. The rat...
Insight into microturbulence and transport in tokamak plasmas is being sought using linear simulatio...
Insight into microturbulence and transport in tokamak plasmas is being sought using linear simulatio...
In JET advanced tokamak research mainly focuses on plasmas with internal transport barriers (ITBs), ...
The effect of a toroidal field (TF) ripple on the formation and performance of internal transport ba...
The transport, flow shear, and linear growth rates of microturbulence are studied for a JET plasma w...
The transport, flow shear, and linear growth rates of microturbulence are studied for a Joint Europe...
Linear simulations of plasma microturbulence are used with recent radial profiles of toroidal veloci...
Internal Transport Barriers (ITB's) in tokamak plasmas are a promising way to achieve steady-state p...
At JET the dynamics of internal transport barriers (ITBs) has been explored by trying to decouple th...
Recent experiments with Optimised Shear plasma in JET [1,2] revealed some unusual features of the In...
A linear empirical threshold condition ωExB/γITG>0.68s-0.095 has been found for the onset of the ...
The physics of internal transport barrier (ITB) formation in JET has been investigated using micro-s...
Plasmas with improved confinement by an Internal Transport Barrier (ITB) are considered in the Advan...
This paper reports on the recent studies of toroidal and poloidal momentum transport in JET. The rat...
Insight into microturbulence and transport in tokamak plasmas is being sought using linear simulatio...
Insight into microturbulence and transport in tokamak plasmas is being sought using linear simulatio...
In JET advanced tokamak research mainly focuses on plasmas with internal transport barriers (ITBs), ...
The effect of a toroidal field (TF) ripple on the formation and performance of internal transport ba...