The presence of impurity species in magnetic confinement fusion devices leads to radiation losses and plasma dilution. Thus it is important to analyze impurity dynamics, and search for means to control them. In stellarator plasmas the neoclassical ambipolar radial electric field often points radially inwards (referred to as the ion root regime), causing impurities to accumulate in the core. This can limit the performance of nonaxisymmetric devices. In the present work we analyze neoclassical impurity transport in stellarator plasmas using a recently developed continuum drift-kinetic solver, the SFINCS code (the Stellarator Fokker- Planck Iterative Neoclassical Conservative Solver). The study is performed for a case close to the edge of W7-...
An impurity hole observed in the large helical device (LHD) is a hollow density profile of an impuri...
The stellarator is a fusion energy concept that relies on fully three-dimensional shaping of magneti...
The transport dynamics of impurities in the pedestal region of ITER plasmas is of crucial interest s...
The presence of impurity species in magnetic confinement fusion devices leads to radiation losses an...
Impurities cause radiation losses and plasma dilution, and in stellarator plasmas the neoclassical a...
A potential threat to the performance of magnetically confined fusion plasmas is the problem of impu...
The accumulation of impurities in the core of magnetically confined plasmas, resulting from standard...
Nuclear fusion is foreseen as one of the options for future energy production. In establishing the p...
Neoclassical accumulation of impurities in the core of hot stellarator plasmas is a known problem. ...
Avoiding impurity accumulation is a requirement for steady-state stellarator operation. The accumula...
The control of impurity accumulation is one of the main challenges for future stellarator fusion rea...
Low collisionality stellarator plasmas usually display a large negative radial electric field that h...
Achieving impurity and helium ash control is a crucial issue in the path towards fusion-grade magnet...
The neoclassical transport of impurities is investigated for a plasma without toroidal rotation nor ...
High-Z impurities in magnetic-confinement devices are prone to develop density variations on the flu...
An impurity hole observed in the large helical device (LHD) is a hollow density profile of an impuri...
The stellarator is a fusion energy concept that relies on fully three-dimensional shaping of magneti...
The transport dynamics of impurities in the pedestal region of ITER plasmas is of crucial interest s...
The presence of impurity species in magnetic confinement fusion devices leads to radiation losses an...
Impurities cause radiation losses and plasma dilution, and in stellarator plasmas the neoclassical a...
A potential threat to the performance of magnetically confined fusion plasmas is the problem of impu...
The accumulation of impurities in the core of magnetically confined plasmas, resulting from standard...
Nuclear fusion is foreseen as one of the options for future energy production. In establishing the p...
Neoclassical accumulation of impurities in the core of hot stellarator plasmas is a known problem. ...
Avoiding impurity accumulation is a requirement for steady-state stellarator operation. The accumula...
The control of impurity accumulation is one of the main challenges for future stellarator fusion rea...
Low collisionality stellarator plasmas usually display a large negative radial electric field that h...
Achieving impurity and helium ash control is a crucial issue in the path towards fusion-grade magnet...
The neoclassical transport of impurities is investigated for a plasma without toroidal rotation nor ...
High-Z impurities in magnetic-confinement devices are prone to develop density variations on the flu...
An impurity hole observed in the large helical device (LHD) is a hollow density profile of an impuri...
The stellarator is a fusion energy concept that relies on fully three-dimensional shaping of magneti...
The transport dynamics of impurities in the pedestal region of ITER plasmas is of crucial interest s...