Research and development on pulsed energy technologies primarily for pulsed high-beta fusion systems, is described. Systems studies at Los Alamos and elsewhere have served to define these required technologies, which include fast discharging homopolar machines, pulsed superconducting coils, and the associated switching technology. Programs at the Los Alamos Scientific Laboratory, Westinghouse, and The University of' Texas are described here.Center for Electromechanic
High explosive pulsed power (HEPP) techniques can address a wide range of pulsed power needs. The ba...
Pulse power technology has been supported and developed in the US over the last 4 decades by the Dep...
Inexpensive and reliable methods of storing and transferring large amounts of energy (>50 MJ) are es...
A survey of the various methods of energy-storage for pulsed-power applications, such as thermonucle...
Interest has grown rapidly in new methods of storing megajoules of energy and delivering it to loads...
Over the past 15 years, steady and sometimes exciting progress has been made in the hybrid technolog...
The fusion program embraces low loss superconductor strand development with integration into cables ...
Pulsed power refers to the science and technology of accumulating energy over a relatively long peri...
Pulsed power refers to the science and technology of accumulating energy over a relatively long peri...
The pulsed power demands of the current generation of controlled thermonuclear fusion experiments ha...
The pulsed power demands of the current generation of controlled thermonuclear fusion experiments ha...
Pulsed power refers to the science and technology of accumulating energy over a relatively long peri...
The pulsed power technology has been applied in particle accelerators and storage rings for over fou...
In this paper, we give a review of some most powerful pulsed systems developed at the Institute of H...
Pulsed power technologies could be an answer to many cutting-edge applications. The challenge is in ...
High explosive pulsed power (HEPP) techniques can address a wide range of pulsed power needs. The ba...
Pulse power technology has been supported and developed in the US over the last 4 decades by the Dep...
Inexpensive and reliable methods of storing and transferring large amounts of energy (>50 MJ) are es...
A survey of the various methods of energy-storage for pulsed-power applications, such as thermonucle...
Interest has grown rapidly in new methods of storing megajoules of energy and delivering it to loads...
Over the past 15 years, steady and sometimes exciting progress has been made in the hybrid technolog...
The fusion program embraces low loss superconductor strand development with integration into cables ...
Pulsed power refers to the science and technology of accumulating energy over a relatively long peri...
Pulsed power refers to the science and technology of accumulating energy over a relatively long peri...
The pulsed power demands of the current generation of controlled thermonuclear fusion experiments ha...
The pulsed power demands of the current generation of controlled thermonuclear fusion experiments ha...
Pulsed power refers to the science and technology of accumulating energy over a relatively long peri...
The pulsed power technology has been applied in particle accelerators and storage rings for over fou...
In this paper, we give a review of some most powerful pulsed systems developed at the Institute of H...
Pulsed power technologies could be an answer to many cutting-edge applications. The challenge is in ...
High explosive pulsed power (HEPP) techniques can address a wide range of pulsed power needs. The ba...
Pulse power technology has been supported and developed in the US over the last 4 decades by the Dep...
Inexpensive and reliable methods of storing and transferring large amounts of energy (>50 MJ) are es...