Thermonuclear ignition condition for deuterium-tritium plasmas can be achieved in compact, high magnetic field devices such as Ignitor. The main scientific goals, the underlying physics basis, and the most relevant engineering solutions of this experiment are described. Burning plasma conditions can be reached either with ohmic heating only or with small amount of auxiliary power in the form of ICRH waves, and this condition can be sustained for a time considerably longer than all the relevant plasma time scales. In the reference operating scenario, no transport barriers are present, and the resulting thermal loads on the plasma facing component are estimated to be rather modest, thanks to the high edge density and low edge temperature that...
This paper concerns important and difficult problems connected with a design and construction of the...
This paper concerns important and difficult problems connected with a design and construction of the...
Careful analyses of the parameter evolution of the plasmas that can be produced by the Ignitor machi...
Thermonuclear ignition condition for deuterium-tritium plasmas can be achieved in compact, high magn...
The Ignitor project is aimed at approaching ignition conditions in Deuterium-Tritium plasmas in ord...
Nuclear fusion studies are currently devoted to the Deuterium-Tritium (DT) fuel cycle, the easiest w...
Abstract. The main advances made within the Ignitor program, that is aimed at investigating the phys...
The Ignitor Program maintains the objective of approaching D-T ignition conditions by incorporating ...
The nonlinear thermal balance equation for classical plasma in a toroidal geometry is analytically a...
One of the main physics objectives of ITER is to operate, in a nuclear environment and on sufficient...
The interaction processes between the burning plasma and the first wall in a fusion reactor are dive...
A novel concept for a fusion ignition experiment, IGNITEX proposed along the lines of previous ideas...
A recently proposed fusion testing device called IGNITEX is described in this paper. The original id...
Ignition criteria and fusion power density are calculated for catalyzed-D and D- 3He plasmas for hot...
Most of the studies and experiments on nuclear fusion are currently devoted to the Deuterium-Tritium...
This paper concerns important and difficult problems connected with a design and construction of the...
This paper concerns important and difficult problems connected with a design and construction of the...
Careful analyses of the parameter evolution of the plasmas that can be produced by the Ignitor machi...
Thermonuclear ignition condition for deuterium-tritium plasmas can be achieved in compact, high magn...
The Ignitor project is aimed at approaching ignition conditions in Deuterium-Tritium plasmas in ord...
Nuclear fusion studies are currently devoted to the Deuterium-Tritium (DT) fuel cycle, the easiest w...
Abstract. The main advances made within the Ignitor program, that is aimed at investigating the phys...
The Ignitor Program maintains the objective of approaching D-T ignition conditions by incorporating ...
The nonlinear thermal balance equation for classical plasma in a toroidal geometry is analytically a...
One of the main physics objectives of ITER is to operate, in a nuclear environment and on sufficient...
The interaction processes between the burning plasma and the first wall in a fusion reactor are dive...
A novel concept for a fusion ignition experiment, IGNITEX proposed along the lines of previous ideas...
A recently proposed fusion testing device called IGNITEX is described in this paper. The original id...
Ignition criteria and fusion power density are calculated for catalyzed-D and D- 3He plasmas for hot...
Most of the studies and experiments on nuclear fusion are currently devoted to the Deuterium-Tritium...
This paper concerns important and difficult problems connected with a design and construction of the...
This paper concerns important and difficult problems connected with a design and construction of the...
Careful analyses of the parameter evolution of the plasmas that can be produced by the Ignitor machi...