An experiment was done with TFTR DT plasmas to determine the effect of the q(r) profile on the alpha particle ripple loss to the outer midplane. The alpha particle loss measurements were made using a radially movable scintillator detector 20 degrees below the outer midplane. The experimental results were compared with TF ripple loss calculations done using a Monte Carlo guiding center orbit following code, ORBIT. Although some of the experimental results are consistent with the ORBIT code modeling, the variation of the alpha loss with the q(r) profiles is not well explained by this code. Quantitative interpretation of these measurements requires a careful analysis of the limiter shadowing effect, which strongly determines the diffusion of a...
Princeton's Tokamak Fusion Test Reactor (TFTR) is the first experimental fusion device to routinely ...
MHD-induced increases in alpha particle loss to the wall were observed for both coherent modes and t...
The confinement and loss of fusion alpha particles are examined for reversed magnetic shear plasmas ...
Measurements of DT alpha particle loss to the outer midplane region of TFTR have been made using a r...
Quantitative evaluation of TF ripple loss of DT alpha particles is a central issue for reactor desig...
A new code, Monte Carlo Collisional Stochastic Orbit Retracing (MCCSOR), has been developed to model...
Modelling of TF ripple loss of alphas in DT experiments on TFTR now includes neoclassical calculatio...
The Pellet Charge Exchange (PCX) diagnostic on the Tokamak Fusion Test Reactor (TFTR) presently meas...
Hamiltonian coordinate, guiding center code calculations of the toroidal field ripple loss of alpha ...
Because alpha particle losses can have a significant influence on tokamak reactor viability, the los...
Predictions for ripple loss of fast ions from TFTR are investigated with a guiding center code inclu...
An escaping alpha collector probe has been developed for TFTR`s DT phase. Energy distributions of es...
MHD-induced increases in alpha particle loss to the wall were observed for both coherent modes and t...
In a collaboration involving General Atomics, the A. F. Ioffe Physical-Technical Institute, and the ...
The energy distributions and radial density profiles of the fast-confined trapped alpha particles in...
Princeton's Tokamak Fusion Test Reactor (TFTR) is the first experimental fusion device to routinely ...
MHD-induced increases in alpha particle loss to the wall were observed for both coherent modes and t...
The confinement and loss of fusion alpha particles are examined for reversed magnetic shear plasmas ...
Measurements of DT alpha particle loss to the outer midplane region of TFTR have been made using a r...
Quantitative evaluation of TF ripple loss of DT alpha particles is a central issue for reactor desig...
A new code, Monte Carlo Collisional Stochastic Orbit Retracing (MCCSOR), has been developed to model...
Modelling of TF ripple loss of alphas in DT experiments on TFTR now includes neoclassical calculatio...
The Pellet Charge Exchange (PCX) diagnostic on the Tokamak Fusion Test Reactor (TFTR) presently meas...
Hamiltonian coordinate, guiding center code calculations of the toroidal field ripple loss of alpha ...
Because alpha particle losses can have a significant influence on tokamak reactor viability, the los...
Predictions for ripple loss of fast ions from TFTR are investigated with a guiding center code inclu...
An escaping alpha collector probe has been developed for TFTR`s DT phase. Energy distributions of es...
MHD-induced increases in alpha particle loss to the wall were observed for both coherent modes and t...
In a collaboration involving General Atomics, the A. F. Ioffe Physical-Technical Institute, and the ...
The energy distributions and radial density profiles of the fast-confined trapped alpha particles in...
Princeton's Tokamak Fusion Test Reactor (TFTR) is the first experimental fusion device to routinely ...
MHD-induced increases in alpha particle loss to the wall were observed for both coherent modes and t...
The confinement and loss of fusion alpha particles are examined for reversed magnetic shear plasmas ...