The experimental thermonuclear reactor, ITER, is currently being constructed in Cadarache, France. The reactor vessel will be constructred with a beryllium coated wall, and a tungsten coated divertor. As a plasma-facing component, the divertor will be under conditions of extreme temperature, resulting in the sputtering of tungsten impurities into the main body plasma. Modelling and understanding the potential cooling effects of these impurities requires detailed collisional-radiative modelling. These models require a wealth of atomic data for the various atomic species in the plasma. In particular, partial, final-state resolved dielectronic/radiative recombination (DR/RR) rate coefficients for tungsten are required. In this manuscript, we p...
We present experimentally measured and theoretically calculated rate coefficients for the electron-i...
Tungsten is an important element for magnetically confined fusion plasmas but has the potential to c...
We review experimental and theoretical efforts aimed at a detailed understanding of the recombinatio...
The experimental thermonuclear reactor, ITER, is currently being constructed in Cadarache, France. T...
The experimental thermonuclear reactor, ITER, is currently being constructed in Cadarache, France. T...
Dielectronic recombination (DR) is a key atomic process which affects the spectroscopic diagnostic m...
Tungsten is an important metal in nuclear fusion reactors. It will be used in the divertor component...
Dielectronic recombination (DR) is the dominant mode of recombination in magnetically confined fusio...
Tungsten is an important element for magnetically confined fusion plasmas but has the potential to c...
The plasma facing components in ITER will be constructed using Tungsten. Sputtering of plasma agains...
A requirement of collisional-radiative models of magnetic fusion plasmas is that a detailed set of a...
Dielectronic recombination (DR) is the dominant mode of recombination in magnetically confined fusio...
We present experimentally measured and theoretically calculated rate coefficients for the electron-i...
We present experimentally measured and theoretically calculated rate coefficients for the electron-i...
We present experimentally measured and theoretically calculated rate coefficients for the electron-i...
Tungsten is an important element for magnetically confined fusion plasmas but has the potential to c...
We review experimental and theoretical efforts aimed at a detailed understanding of the recombinatio...
The experimental thermonuclear reactor, ITER, is currently being constructed in Cadarache, France. T...
The experimental thermonuclear reactor, ITER, is currently being constructed in Cadarache, France. T...
Dielectronic recombination (DR) is a key atomic process which affects the spectroscopic diagnostic m...
Tungsten is an important metal in nuclear fusion reactors. It will be used in the divertor component...
Dielectronic recombination (DR) is the dominant mode of recombination in magnetically confined fusio...
Tungsten is an important element for magnetically confined fusion plasmas but has the potential to c...
The plasma facing components in ITER will be constructed using Tungsten. Sputtering of plasma agains...
A requirement of collisional-radiative models of magnetic fusion plasmas is that a detailed set of a...
Dielectronic recombination (DR) is the dominant mode of recombination in magnetically confined fusio...
We present experimentally measured and theoretically calculated rate coefficients for the electron-i...
We present experimentally measured and theoretically calculated rate coefficients for the electron-i...
We present experimentally measured and theoretically calculated rate coefficients for the electron-i...
Tungsten is an important element for magnetically confined fusion plasmas but has the potential to c...
We review experimental and theoretical efforts aimed at a detailed understanding of the recombinatio...