Divertor plasma detachment is analyzed from the viewpoint of energy and particle balance in the edge plasma. It is shown that volumetric recombination and impurity radiation losses are responsible for the transition to the detached plasma regime, whereas “momentum removal” plays although important, but auxiliary role providing conditions necessary for the first two to become efficient. A criterion of the local (on an isolated flux tube) detachment onset is studied for both pure and impurity-seeded plasmas. Keywords: Divertor, Detachment, Impurity, Recombinatio
We will report on a comprehensive study of the dynamic response of the detached recombining plasma i...
The physics of divertor detachment is determined by divertor power, particle and momentum balance. T...
The role of impurity radiation at the plasma edge of fusion devices is considered. The conditions cr...
The 2D simulations of edge plasma transport show that unlike some earlier publications, the impurity...
Numerical and analytical study of a detached divertor equilibrium is presented. The model uses one-d...
In order to examine the effect of radiation power loss due to impurity gas puff in divertor plasma, ...
In this work we provide experimental insights into the impact of plasma–molecule interactions on the...
International audienceThe SOLEDGE-EIRENE edge plasma code provides solutions for particle and energy...
International audienceThe SOLEDGE-EIRENE edge plasma code provides solutions for particle & energy t...
We present detailed profiles of the magnitude and location of volumetric recombination occurring in ...
Recent DIII-D experiments with enhanced Scrape-off Layer (SOL) diagnostics permit detailed character...
The plasma detachment is a key concept for heat and particle control in magnetically confined fusion...
The process of divertor detachment, whereby heat and particle fluxes to divertor surfaces are strong...
To achieve a tolerable heat and particle flux to the divertor target of fusion reactors, the so-call...
The concept of a cold radiative plasma boundary is presented as a possible solution of the energy ex...
We will report on a comprehensive study of the dynamic response of the detached recombining plasma i...
The physics of divertor detachment is determined by divertor power, particle and momentum balance. T...
The role of impurity radiation at the plasma edge of fusion devices is considered. The conditions cr...
The 2D simulations of edge plasma transport show that unlike some earlier publications, the impurity...
Numerical and analytical study of a detached divertor equilibrium is presented. The model uses one-d...
In order to examine the effect of radiation power loss due to impurity gas puff in divertor plasma, ...
In this work we provide experimental insights into the impact of plasma–molecule interactions on the...
International audienceThe SOLEDGE-EIRENE edge plasma code provides solutions for particle and energy...
International audienceThe SOLEDGE-EIRENE edge plasma code provides solutions for particle & energy t...
We present detailed profiles of the magnitude and location of volumetric recombination occurring in ...
Recent DIII-D experiments with enhanced Scrape-off Layer (SOL) diagnostics permit detailed character...
The plasma detachment is a key concept for heat and particle control in magnetically confined fusion...
The process of divertor detachment, whereby heat and particle fluxes to divertor surfaces are strong...
To achieve a tolerable heat and particle flux to the divertor target of fusion reactors, the so-call...
The concept of a cold radiative plasma boundary is presented as a possible solution of the energy ex...
We will report on a comprehensive study of the dynamic response of the detached recombining plasma i...
The physics of divertor detachment is determined by divertor power, particle and momentum balance. T...
The role of impurity radiation at the plasma edge of fusion devices is considered. The conditions cr...