Recent DIII-D experiments have significantly improved the understanding of internal transport barriers (ITBs) that are triggered close to the time when an integer value of the minimum in q is crossed. While this phenomenon has been observed on many tokamaks, the extensive transport and fluctuation diagnostics on DIII-D have permitted a detailed study of the generation mechanisms of q-triggered ITBs as pertaining to turbulence suppression dynamics, shear flows, and energetic particle modes. In these discharges, the evolution of the q profile is measured using motional Stark effect polarimetry and the integer q min crossings are further pinpointed in time by the observation of Alfvén cascades. High time resolution measurements of the ion and ...
Alfvén instabilities excited by energetic ions are used as a means to reduce the central magnetic s...
A critical gradient threshold has been observed for the first time in a systematic, controlled exper...
The E x B shear stabilization paradigm explains much of the phenomenology of ion thermal transport i...
The authors report results of experiments to further determine the underlying physics behind the for...
Substantial progress has been made towards both understanding and control of internal transport barr...
Internal transport barriers (ITBs) are regions of plasmas in tokamak discharges with strongly reduce...
The formation of internal transport barriers (ITBs) has been experimentally associated with the pres...
The formation of internal transport barriers (ITBs) has been experimentally associated with the pres...
The formation of internal transport barriers (ITBs) has been experimentally associated with the pres...
Results from recent experiments on the DIII-D tokamak have revealed many important details on transp...
Discharges characteristic of the quiescent double barrier (QDB) regime [1] are attractive for develo...
The formation of internal transport barriers (ITBs) has been experimentally associated with the pres...
Discharges characteristic of the quiescent double barrier (QDB) regime [1] are attractive for develo...
Core transport barriers can be reliably formed in DIII-D by tailoring the evolution of the current d...
This paper describes the physical mechanisms responsible for turbulence control and transport barrie...
Alfvén instabilities excited by energetic ions are used as a means to reduce the central magnetic s...
A critical gradient threshold has been observed for the first time in a systematic, controlled exper...
The E x B shear stabilization paradigm explains much of the phenomenology of ion thermal transport i...
The authors report results of experiments to further determine the underlying physics behind the for...
Substantial progress has been made towards both understanding and control of internal transport barr...
Internal transport barriers (ITBs) are regions of plasmas in tokamak discharges with strongly reduce...
The formation of internal transport barriers (ITBs) has been experimentally associated with the pres...
The formation of internal transport barriers (ITBs) has been experimentally associated with the pres...
The formation of internal transport barriers (ITBs) has been experimentally associated with the pres...
Results from recent experiments on the DIII-D tokamak have revealed many important details on transp...
Discharges characteristic of the quiescent double barrier (QDB) regime [1] are attractive for develo...
The formation of internal transport barriers (ITBs) has been experimentally associated with the pres...
Discharges characteristic of the quiescent double barrier (QDB) regime [1] are attractive for develo...
Core transport barriers can be reliably formed in DIII-D by tailoring the evolution of the current d...
This paper describes the physical mechanisms responsible for turbulence control and transport barrie...
Alfvén instabilities excited by energetic ions are used as a means to reduce the central magnetic s...
A critical gradient threshold has been observed for the first time in a systematic, controlled exper...
The E x B shear stabilization paradigm explains much of the phenomenology of ion thermal transport i...