Exploratory field-reversed-configuration (FRC) experiments, initiated at Los Alamos in the midseventies, demonstrated FRC lifetimes substantially longer than predicted from MHD stability theory. Subsequent experimental and theoretical advances have provided considerable understanding of FRC stability physics, the characteristics of the configuration loss processes, and the particle confinement scaling with size. The critical FRC physics issues, which directly relate to the development of an FRC fusion reactor and need to be addressed in a new generation of experiments, have been clearly identified
A hot stable field-reversed configuration (FRC) has been produced in the C-2 experiment by colliding...
Alamos National Laboratory. The goal of the project is to demonstrate the production of suitable FRC...
A hot stable field-reversed configuration (FRC) has been produced in the C-2 experiment by colliding...
We are developing a field reversed configuration (FRC) plasma for application as the target plasma t...
The goal of the Field-Reversed Configuration Heating Experiment (FRCHX) is to demonstrate magnetized...
New computational results are presented which advance the understanding of the sta-bility properties...
Abstract: New results elucidating FRC equilibrium and stability are reported. Both prolate and oblat...
New computational results are presented which advance the understanding of the sta-bility properties...
FRX-L (Field Reversed configuration experiment - Liner) is a magnetized-target injector for magnetiz...
A primary purpose of the large bore (0.5 m dia.) FRX-C field-reversed theta pinch experiment is to s...
After more than two years of preparation, high-power FRC compression heating studies are now underwa...
A field-reversed configuration (FRC) is a toroidal plasma device presently being investigated as a p...
A field reversed configuration (FRC) plasma device is being developed at AFRL Edwards. This geometry...
Conventional field-reversed configurations (FRC) face notable stability and confinement concerns, wh...
Conventional field-reversed configurations (FRC) face notable stability and confinement concerns, wh...
A hot stable field-reversed configuration (FRC) has been produced in the C-2 experiment by colliding...
Alamos National Laboratory. The goal of the project is to demonstrate the production of suitable FRC...
A hot stable field-reversed configuration (FRC) has been produced in the C-2 experiment by colliding...
We are developing a field reversed configuration (FRC) plasma for application as the target plasma t...
The goal of the Field-Reversed Configuration Heating Experiment (FRCHX) is to demonstrate magnetized...
New computational results are presented which advance the understanding of the sta-bility properties...
Abstract: New results elucidating FRC equilibrium and stability are reported. Both prolate and oblat...
New computational results are presented which advance the understanding of the sta-bility properties...
FRX-L (Field Reversed configuration experiment - Liner) is a magnetized-target injector for magnetiz...
A primary purpose of the large bore (0.5 m dia.) FRX-C field-reversed theta pinch experiment is to s...
After more than two years of preparation, high-power FRC compression heating studies are now underwa...
A field-reversed configuration (FRC) is a toroidal plasma device presently being investigated as a p...
A field reversed configuration (FRC) plasma device is being developed at AFRL Edwards. This geometry...
Conventional field-reversed configurations (FRC) face notable stability and confinement concerns, wh...
Conventional field-reversed configurations (FRC) face notable stability and confinement concerns, wh...
A hot stable field-reversed configuration (FRC) has been produced in the C-2 experiment by colliding...
Alamos National Laboratory. The goal of the project is to demonstrate the production of suitable FRC...
A hot stable field-reversed configuration (FRC) has been produced in the C-2 experiment by colliding...