The aim of the presented experiments is to study the transport of a heavy ion beam in a high-current plasma channel. The discharge is initiated in NH3 gas at pressures between 2 and 20 mbar by a line-tuned CO2 laser. A stable discharge over the entire electrode gap (0.5 m) was achieved for currents up to 60 kA. Concerning the ion beam transport, the magnetic field distribution inside the plasma channel has to be known. The ion-optical properties of the plasma channel have been investigated using different species of heavy ions (C, Ni, Au, U) with 11.4 MeV/u during six runs at the Gesellschaft fur Schwerionenforschungs-UNILAC linear accelerator. The high magnetic field allowed the accomplishment of one complete betatron oscillation along the...
Gegenwaertige Entwuerfe fuer schwerionengetriebene Traegheitsfusionsreaktoren erfordern Strahlstroem...
Intense beams of protons and heavy ions have been observed in ultra-intense laser-solid interaction ...
Results are presented for the first experiments in which long‐pulse (0.4–1 μsec), relativistic (0.8 ...
A critical issue in inertial confinement fusion driven by heavy ions is the transport of the ion bea...
The transport of high-current beams a crucial task in heavy-ion-beam-driven inertial fusion. Plasma-...
Most of the future accelerators will be high intensity machines delivering mega-watt beams for appli...
High current discharge channels can neutralize both current and space charge of very intense ion bea...
Concepts for heavy-ion fusion (HIF) reactors require the transport of kiloampere ion beams over dist...
The thesis at hand addresses the generation, handling and transport of laser-driven heavy ion beams....
Since their discovery, laser accelerated ion beams have been the subject of great interest. The ion ...
This thesis presents measurements of high energy ion beams accelerated from high intensity laser int...
The High Current Experiment (HCX) at Lawrence Berkeley National Laboratory is part of the US program...
Gegenwaertige Entwuerfe fuer schwerionengetriebene Traegheitsfusionsreaktoren erfordern Strahlstroem...
Intense beams of protons and heavy ions have been observed in ultra-intense laser-solid interaction ...
Results are presented for the first experiments in which long‐pulse (0.4–1 μsec), relativistic (0.8 ...
A critical issue in inertial confinement fusion driven by heavy ions is the transport of the ion bea...
The transport of high-current beams a crucial task in heavy-ion-beam-driven inertial fusion. Plasma-...
Most of the future accelerators will be high intensity machines delivering mega-watt beams for appli...
High current discharge channels can neutralize both current and space charge of very intense ion bea...
Concepts for heavy-ion fusion (HIF) reactors require the transport of kiloampere ion beams over dist...
The thesis at hand addresses the generation, handling and transport of laser-driven heavy ion beams....
Since their discovery, laser accelerated ion beams have been the subject of great interest. The ion ...
This thesis presents measurements of high energy ion beams accelerated from high intensity laser int...
The High Current Experiment (HCX) at Lawrence Berkeley National Laboratory is part of the US program...
Gegenwaertige Entwuerfe fuer schwerionengetriebene Traegheitsfusionsreaktoren erfordern Strahlstroem...
Intense beams of protons and heavy ions have been observed in ultra-intense laser-solid interaction ...
Results are presented for the first experiments in which long‐pulse (0.4–1 μsec), relativistic (0.8 ...