The Tokamak Fusion Test Reactor (TFTR) achieved first plasma at 3:05 a.m. on December 24, 1982. During the course of the year, the plasma current was raised to a maximum of 1 MA, and extensive confinement studies were carried out with ohmic-heated plasmas. The most important finding was that tokamak energy confinement time increases as the cube of the plasma size. The Princeton Large Torus (PLT) carried out a number of high-powered plasma-heating experiments in the ion cyclotron frequency range, and also demonstrated for the first time that a 100-kA tokamak discharge can be built up by means of rf-waves in the lower hybrid range, without any need for inductive current drive by the conventional tokamak transformer system. The Poloidal Divert...
This proposal is a collaborative project between Prairie View A&M University and Princeton Universit...
This report contains discussions on the following topics: principal parameters achieved in experimen...
Experiments in the Tokamak Fusion Test Reactor (TFTR) [Phys. Plasmas 2, 2176 (1995)] have explored s...
The Tokamak Fusion Test Reactor (TFTR) has operated since December 1982 with ohmically heated plasma...
Summaries of research progress during this period are given for the following areas: (1) TFTR, (2) P...
Alpha particle physics; beta limits; disruptions; fusion; magnetic confinement; neutral beam heating...
The Tokamak Fusion Test Reactor (TFTR) is a large tokamak which has performed experiments with 50:50...
The Tokamak Fusion Test Reactor (TFTR) project is well into the experimental phase of its deuterium-...
Experiments with plasmas having nearly equal concentrations of deuterium and tritium have been carri...
Progress in the performance of tokamak devices has enabled not only the production of significant bu...
Progress in the performance of tokamak devices has enable not only the production of significant bur...
In the year just past, the authors made major progress in understanding turbulence and transport in ...
Aside from extending ''standard'' ohmic and neutral beam heating studies to advanced plasma paramete...
Experiments with plasmas having nearly equal concentrations of deuterium and tritium have been carri...
The paper describes the present (end of February 1985) status of the plasma confinement studies in t...
This proposal is a collaborative project between Prairie View A&M University and Princeton Universit...
This report contains discussions on the following topics: principal parameters achieved in experimen...
Experiments in the Tokamak Fusion Test Reactor (TFTR) [Phys. Plasmas 2, 2176 (1995)] have explored s...
The Tokamak Fusion Test Reactor (TFTR) has operated since December 1982 with ohmically heated plasma...
Summaries of research progress during this period are given for the following areas: (1) TFTR, (2) P...
Alpha particle physics; beta limits; disruptions; fusion; magnetic confinement; neutral beam heating...
The Tokamak Fusion Test Reactor (TFTR) is a large tokamak which has performed experiments with 50:50...
The Tokamak Fusion Test Reactor (TFTR) project is well into the experimental phase of its deuterium-...
Experiments with plasmas having nearly equal concentrations of deuterium and tritium have been carri...
Progress in the performance of tokamak devices has enabled not only the production of significant bu...
Progress in the performance of tokamak devices has enable not only the production of significant bur...
In the year just past, the authors made major progress in understanding turbulence and transport in ...
Aside from extending ''standard'' ohmic and neutral beam heating studies to advanced plasma paramete...
Experiments with plasmas having nearly equal concentrations of deuterium and tritium have been carri...
The paper describes the present (end of February 1985) status of the plasma confinement studies in t...
This proposal is a collaborative project between Prairie View A&M University and Princeton Universit...
This report contains discussions on the following topics: principal parameters achieved in experimen...
Experiments in the Tokamak Fusion Test Reactor (TFTR) [Phys. Plasmas 2, 2176 (1995)] have explored s...