The I-mode regime, routinely observed on the Alcator C-Mod tokamak, is characterized by an edge energy transport barrier without an accompanying particle barrier and with broadband instabilities, known as weakly coherent modes (WCM), believed to regulate particle transport at the edge. Recent experiments on the DIII-D tokamak exhibit I-mode characteristics in various physical quantities. These DIII-D plasmas evolve over long periods, lasting several energy confinement times, during which the edge electron temperature slowly evolves towards an H-mode-like profile, while maintaining a typical L-mode edge density profile. During these periods, referred to as I-mode phases, the radial electric field at the edge also gradually reaches values typ...
In this paper, we report observations of reduced core (0.40<ρ<0. 95) fluctuations in the edge locali...
This paper describes joint ITPA studies of the I-mode regime, which features an edge thermal barrier...
In the early twentieth century, scientists found out what process keeps the Sun burning: nuclear fus...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, September 2012.Cataloged f...
We report extended studies of the I-mode regime [Whyte et al., Nucl. Fusion 50, 105005 (2010)] obtai...
Properties of the Imode confinement regime on the ASDEX Upgrade tokamak are summarized. A weak de...
Understanding the turbulent transport of particles, momentum, and heat continues to be an important ...
Submitted to Physics of Plasmas.The evolution of edge pedestal parameters between edge-localized mod...
International audienceProperties of the I-mode confinement regime on the ASDEX Upgrade tokamak are s...
The authors' data indicate that the L-mode to H-mode transition in the DIII-D tokamak is associated ...
International audienceProperties of the I-mode confinement regime on the ASDEX Upgrade tokamak are s...
The I-mode is a plasma regime obtained when the usual L-H power threshold is high, e.g. with unfav...
I-mode is a high-performance tokamak regime characterized by the formation of a temperature pedestal...
While operating a magnetic fusion device in H-mode has many advantages, care must be taken to unders...
In this paper we show that changing from an ion temperature gradient (ITG) to a trapped electron mod...
In this paper, we report observations of reduced core (0.40<ρ<0. 95) fluctuations in the edge locali...
This paper describes joint ITPA studies of the I-mode regime, which features an edge thermal barrier...
In the early twentieth century, scientists found out what process keeps the Sun burning: nuclear fus...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, September 2012.Cataloged f...
We report extended studies of the I-mode regime [Whyte et al., Nucl. Fusion 50, 105005 (2010)] obtai...
Properties of the Imode confinement regime on the ASDEX Upgrade tokamak are summarized. A weak de...
Understanding the turbulent transport of particles, momentum, and heat continues to be an important ...
Submitted to Physics of Plasmas.The evolution of edge pedestal parameters between edge-localized mod...
International audienceProperties of the I-mode confinement regime on the ASDEX Upgrade tokamak are s...
The authors' data indicate that the L-mode to H-mode transition in the DIII-D tokamak is associated ...
International audienceProperties of the I-mode confinement regime on the ASDEX Upgrade tokamak are s...
The I-mode is a plasma regime obtained when the usual L-H power threshold is high, e.g. with unfav...
I-mode is a high-performance tokamak regime characterized by the formation of a temperature pedestal...
While operating a magnetic fusion device in H-mode has many advantages, care must be taken to unders...
In this paper we show that changing from an ion temperature gradient (ITG) to a trapped electron mod...
In this paper, we report observations of reduced core (0.40<ρ<0. 95) fluctuations in the edge locali...
This paper describes joint ITPA studies of the I-mode regime, which features an edge thermal barrier...
In the early twentieth century, scientists found out what process keeps the Sun burning: nuclear fus...