A potential threat to the performance of magnetically confined fusion plasmas is the problem of impurity accumulation, which causes the concentration of highly charged impurity ions to rise uncontrollably in the center of the plasma and spoil the energy confinement by excessive radiation. It has long been thought that the collisional transport of impurities in stellarators always leads to such an accumulation (if the electric field points inwards, which is usually the case), whereas tokamaks, being axisymmetric, can benefit from "temperature screening," i.e., an outward flux of impurities driven by the temperature gradient. Here it is shown, using analytical techniques supported by results from a new numerical code, that such screening can ...
Nuclear fusion has the potential to generate abundant and clean energy. In magnetic confinement fusi...
The problem of impurity transport in fusion plasmas is of extraordinary importance and has been inte...
The stellarator is a fusion energy concept that relies on fully three-dimensional shaping of magneti...
The accumulation of impurities in the core of magnetically confined plasmas, resulting from standard...
A potential threat to the performance of magnetically confined fusion plasmas is the problem of impu...
Neoclassical accumulation of impurities in the core of hot stellarator plasmas is a known problem. ...
Abstract. The presence of impurity species in magnetic confinement fusion devices leads to radiation...
Nuclear fusion is foreseen as one of the options for future energy production. In establishing the p...
Low collisionality stellarator plasmas usually display a large negative radial electric field that h...
The control of impurity accumulation is one of the main challenges for future stellarator fusion rea...
The Stellarator Impurity Transport code (SIT)[1], describes the evolution in time and space of the i...
Avoiding impurity accumulation is a requirement for steady-state stellarator operation. The accumula...
With the enormous growth of high performance computing (HPC) over the last few decades, plasma physi...
High-Z impurities in magnetic-confinement devices are prone to develop density variations on the flu...
The Large Helical Device (LHD) and Wendelstein 7-X (W7-X, under construction) are experiments specia...
Nuclear fusion has the potential to generate abundant and clean energy. In magnetic confinement fusi...
The problem of impurity transport in fusion plasmas is of extraordinary importance and has been inte...
The stellarator is a fusion energy concept that relies on fully three-dimensional shaping of magneti...
The accumulation of impurities in the core of magnetically confined plasmas, resulting from standard...
A potential threat to the performance of magnetically confined fusion plasmas is the problem of impu...
Neoclassical accumulation of impurities in the core of hot stellarator plasmas is a known problem. ...
Abstract. The presence of impurity species in magnetic confinement fusion devices leads to radiation...
Nuclear fusion is foreseen as one of the options for future energy production. In establishing the p...
Low collisionality stellarator plasmas usually display a large negative radial electric field that h...
The control of impurity accumulation is one of the main challenges for future stellarator fusion rea...
The Stellarator Impurity Transport code (SIT)[1], describes the evolution in time and space of the i...
Avoiding impurity accumulation is a requirement for steady-state stellarator operation. The accumula...
With the enormous growth of high performance computing (HPC) over the last few decades, plasma physi...
High-Z impurities in magnetic-confinement devices are prone to develop density variations on the flu...
The Large Helical Device (LHD) and Wendelstein 7-X (W7-X, under construction) are experiments specia...
Nuclear fusion has the potential to generate abundant and clean energy. In magnetic confinement fusi...
The problem of impurity transport in fusion plasmas is of extraordinary importance and has been inte...
The stellarator is a fusion energy concept that relies on fully three-dimensional shaping of magneti...