An intensive theoretical program was launched to try to understand the conditions for safe propagation of intense beam currents in focussing systems, such as continuous and interrupted solenoid lens systems, and quadrupole strong-focussing systems. Analytic methods have led to significant advances in understanding of the new problems; with computational techniques a large amount of new information has been generated on space-charge-dominated transport phenomena; also, at this time a new LBL particle numerical simulation code is almost ready to give new results. Because the Bevalac is an operating heavy ion linac and synchrotron facility with an ongoing R and D effort and in expectation of imminent upgrading to bring it up to a uranium-ion c...
Some recent experiments at the Bevalac are discussed which demonstrate the usefulness of relativisti...
The basic objective of the Heavy Ion Fusion Accelerator Research (HIFAR) program is to assess the su...
The promise of inertial fusion energy driven by heavy ion beams requires the development of accelera...
the technology of heavy-ion accelerators for prospects as drivers for commercial power production fr...
A beam propagation experiment is being prepared to test theoretical predictions about transverse ins...
The long-range goal of the US Heavy Ion Fusion (HIF) program is to develop heavy ion accelerators ca...
An assessment of heavy-ion fusion has been completed. Energetic heavy ions, for example 10-GeV urani...
The long term goal of Heavy Ion Fusion (HIF) is the development of an accelerator with the large bea...
Significant experimental and theoretical progress in the U.S heavy-ion fusion (HIF) program is repor...
Significant experimental and theoretical progress has been made in the U.S. heavy ion fusion program...
Significant experimental and theoretical progress has been made in the U.S. heavy ion fusion program...
Significant experimental and theoretical progress has been made in the U.S. heavy ion fusion program...
The long-range goal of the US Heavy Ion Fusion (HIF) program is to develop heavy ion accelerators ca...
The Accelerator Division was formed as a separate division of the Lawrence Berkeley Laboratory in 19...
The Department of Energy is restructuring the U.S. fusion program to place a greater emphasis on sci...
Some recent experiments at the Bevalac are discussed which demonstrate the usefulness of relativisti...
The basic objective of the Heavy Ion Fusion Accelerator Research (HIFAR) program is to assess the su...
The promise of inertial fusion energy driven by heavy ion beams requires the development of accelera...
the technology of heavy-ion accelerators for prospects as drivers for commercial power production fr...
A beam propagation experiment is being prepared to test theoretical predictions about transverse ins...
The long-range goal of the US Heavy Ion Fusion (HIF) program is to develop heavy ion accelerators ca...
An assessment of heavy-ion fusion has been completed. Energetic heavy ions, for example 10-GeV urani...
The long term goal of Heavy Ion Fusion (HIF) is the development of an accelerator with the large bea...
Significant experimental and theoretical progress in the U.S heavy-ion fusion (HIF) program is repor...
Significant experimental and theoretical progress has been made in the U.S. heavy ion fusion program...
Significant experimental and theoretical progress has been made in the U.S. heavy ion fusion program...
Significant experimental and theoretical progress has been made in the U.S. heavy ion fusion program...
The long-range goal of the US Heavy Ion Fusion (HIF) program is to develop heavy ion accelerators ca...
The Accelerator Division was formed as a separate division of the Lawrence Berkeley Laboratory in 19...
The Department of Energy is restructuring the U.S. fusion program to place a greater emphasis on sci...
Some recent experiments at the Bevalac are discussed which demonstrate the usefulness of relativisti...
The basic objective of the Heavy Ion Fusion Accelerator Research (HIFAR) program is to assess the su...
The promise of inertial fusion energy driven by heavy ion beams requires the development of accelera...