Nuclear fusion reactor plasmas will need to exhaust a significant proportion of energy flux through radiative processes, to enable acceptable divertor loads. This can be obtained by line radiation from impurities, injected from the plasma edge. There are however limitations on the sustainable impurity content, since radiation from the core can lead to a deleterious electron heat sink. Moreover, dilution of the main ions reduces the available fuel. Simultaneously, impurities have an impact on the turbulent transport, both by dilution and by changes in the effective charge. Recent experiments at JET point towards an improvement in plasma confinement in neon seeded discharges with respect to purer equivalent plasmas. In this paper the impact o...
Impurity transport in JET is studied using interpretative analysis and predictive simulations of JET...
Impurity transport coefficients due to Ion-Temperature-Gradient (ITG) mode and Trapped-Electron (TE)...
Impurity transport coefficients due to ion-temperature-gradient (ITG) mode and trapped-electron mode...
Nuclear fusion reactor plasmas will need to exhaust a significant proportion of energy flux through ...
Nuclear fusion reactor plasmas will need to exhaust a significant proportion of energy flux through ...
Nuclear fusion reactor plasmas will need to exhaust a significant proportion of energy flux through ...
Nuclear fusion reactor plasmas will need to exhaust a significant proportion of energy flux through ...
Nuclear fusion reactor plasmas will need to exhaust a significant proportion of energy flux through ...
Impurity seeding of plasma discharges has led to regimes of improved thermal and parti-cle confineme...
Improvement of confinement by a deliberate seeding of impurities like neon and argon has been found ...
Scaling to larger tokamaks of high confinement plasmas with radiating edges, induced by impurities, ...
Scaling to larger tokamaks of high confinement plasmas with radiating edges, induced by impurities, ...
Scaling to larger tokamaks of high confinement plasmas with radiating edges, induced by impurities, ...
Scaling to larger tokamaks of high confinement plasmas with radiating edges, induced by impurities, ...
Impurity transport in JET is studied using interpretative analysis and predictive simulations of JET...
Impurity transport in JET is studied using interpretative analysis and predictive simulations of JET...
Impurity transport coefficients due to Ion-Temperature-Gradient (ITG) mode and Trapped-Electron (TE)...
Impurity transport coefficients due to ion-temperature-gradient (ITG) mode and trapped-electron mode...
Nuclear fusion reactor plasmas will need to exhaust a significant proportion of energy flux through ...
Nuclear fusion reactor plasmas will need to exhaust a significant proportion of energy flux through ...
Nuclear fusion reactor plasmas will need to exhaust a significant proportion of energy flux through ...
Nuclear fusion reactor plasmas will need to exhaust a significant proportion of energy flux through ...
Nuclear fusion reactor plasmas will need to exhaust a significant proportion of energy flux through ...
Impurity seeding of plasma discharges has led to regimes of improved thermal and parti-cle confineme...
Improvement of confinement by a deliberate seeding of impurities like neon and argon has been found ...
Scaling to larger tokamaks of high confinement plasmas with radiating edges, induced by impurities, ...
Scaling to larger tokamaks of high confinement plasmas with radiating edges, induced by impurities, ...
Scaling to larger tokamaks of high confinement plasmas with radiating edges, induced by impurities, ...
Scaling to larger tokamaks of high confinement plasmas with radiating edges, induced by impurities, ...
Impurity transport in JET is studied using interpretative analysis and predictive simulations of JET...
Impurity transport in JET is studied using interpretative analysis and predictive simulations of JET...
Impurity transport coefficients due to Ion-Temperature-Gradient (ITG) mode and Trapped-Electron (TE)...
Impurity transport coefficients due to ion-temperature-gradient (ITG) mode and trapped-electron mode...