The Fusion Advanced Studies Torus (FAST) aims at contributing to the exploitation of ITER and to tackle innovative DEMO technology. FAST has been designed to explore integrated scenarios studying: a) relevant plasma-wall interaction problems, with a large power load (P/R ~ 22) and full metallic wall; b) operational problems in regimes with relevant fusion parameters; c) non-linear dynamics of alpha particle in burning plasmas. Recently three new FAST scenarios have been developed. 1) FAST load assembly has been conceived to accommodate 10MW of NNBI plus 30MW of ICRH; this allows producing fast particle populations with different anisotropy and profile localization. 2) One of the FAST proposal critical points is the extensive use of ICRH pow...
The transport and confinement of fast (MeV) ions produced by ICRH in magnetically confined plasmas c...
One of the main FAST (Fusion Advanced Studies Torus) goals is to have a flexible experiment capable ...
The Fusion Advanced Study Torus (FAST) has been proposed as a high magnetic field, compact size toka...
Fusion Advanced Studies Torus (FAST) aims to contribute to the exploitation of ITER and to explore i...
FAST is a new machine proposed to support ITER experimental exploitation as well as to anticipate DE...
The Fusion Advanced Studies Torus (FAST) conceptual study has been proposed [A. Pizzuto on behalf of...
The Fusion Advanced Study Torus (FAST) has been proposed as a possible European satellite, in view o...
Fusion advanced studies torus (FAST) is a proposal for a satellite facility which can contribute the...
In this paper we present the fusion advanced studies torus (FAST) plasma scenarios and equilibrium c...
A key issue for steady-state tokamak operation is to determine the edge conditions that are compatib...
A key issue for steady-state tokamak operation is to determine the edge conditions that are compatib...
The transport and confinement of fast (MeV) ions produced by ICRH in magnetically confined plasmas c...
One of the main FAST (Fusion Advanced Studies Torus) goals is to have a flexible experiment capable ...
The Fusion Advanced Study Torus (FAST) has been proposed as a high magnetic field, compact size toka...
Fusion Advanced Studies Torus (FAST) aims to contribute to the exploitation of ITER and to explore i...
FAST is a new machine proposed to support ITER experimental exploitation as well as to anticipate DE...
The Fusion Advanced Studies Torus (FAST) conceptual study has been proposed [A. Pizzuto on behalf of...
The Fusion Advanced Study Torus (FAST) has been proposed as a possible European satellite, in view o...
Fusion advanced studies torus (FAST) is a proposal for a satellite facility which can contribute the...
In this paper we present the fusion advanced studies torus (FAST) plasma scenarios and equilibrium c...
A key issue for steady-state tokamak operation is to determine the edge conditions that are compatib...
A key issue for steady-state tokamak operation is to determine the edge conditions that are compatib...
The transport and confinement of fast (MeV) ions produced by ICRH in magnetically confined plasmas c...
One of the main FAST (Fusion Advanced Studies Torus) goals is to have a flexible experiment capable ...
The Fusion Advanced Study Torus (FAST) has been proposed as a high magnetic field, compact size toka...