The new 1.4 MeV/u front end HSI (HochStromInjektor) of the Unilac accelerates ions with A/q ratios of up to 65 and with beam intensities in emA of up to 0.25 A/q. The maximum beam pulse power is up to 1300 kW. During the stepwise linac commissioning from April to Septem-ber 1999 the beam behind of each cavity was analysed within two weeks. A very stable Ar1+ beam out of a vol-ume plasma source MUCIS was used mainly. The meas-ured norm. 80 % emittance areas around 0.45 pi mm mrad are close to the results from beam simulations. Up to 80 % of the design intensity at the linac exit were achieved. In February 2000 an U4+ beam from the MEVVA source was accelerated for the first time
The GSI UNILAC will serve as part of an injector system for the future FAIR facility, currently unde...
The UNILAC was improved for high current performance by replacing the Wideroe prestripper accelerato...
First acceleration of heavy ion beams with a superconducting continuous wave HIM/GSI CW-Linac After ...
The disassembly of the Unilac prestripper linac of the Wideroe type took place at the beginning of 1...
The Facility for Antiproton and Ion Research (FAIR) at GSI Darmstadt will provide unprecedented inte...
The original UNILAC injector uses PENNING type ion sources and charge states up to 10+ for uranium b...
The original UNILAC injector uses PENNING type ion sources and charge states up to 10+ for uranium b...
A new high energy heavy-ion injector (HE-Linac) for the FAIR project was proposedas replacement for ...
The GSI linear accelerator UNILAC provides heavy ion beams at Coulomb barrier energies for search an...
A low energy beam line (1.4 MeV/u) behind the GSI High Charge State Injector (HLI) will provide cw-h...
A low energy beam line (1.4 MeV/u) behind the GSI High Charge State Injector (HLI) will provide cw-h...
The RF part of the new high current injector-linac HSI consists of five cavities with the new operat...
A low energy beam line (1.4 MeV/u) behind the GSI High Charge State Injector (HLI) will provide cw-h...
The present GSI-accelerator complex is foreseen to serve the future synchrotron SIS 100 [1] as an in...
To keep the ambitious Super Heavy Element (SHE) physics program at GSI competitive a superconducting...
The GSI UNILAC will serve as part of an injector system for the future FAIR facility, currently unde...
The UNILAC was improved for high current performance by replacing the Wideroe prestripper accelerato...
First acceleration of heavy ion beams with a superconducting continuous wave HIM/GSI CW-Linac After ...
The disassembly of the Unilac prestripper linac of the Wideroe type took place at the beginning of 1...
The Facility for Antiproton and Ion Research (FAIR) at GSI Darmstadt will provide unprecedented inte...
The original UNILAC injector uses PENNING type ion sources and charge states up to 10+ for uranium b...
The original UNILAC injector uses PENNING type ion sources and charge states up to 10+ for uranium b...
A new high energy heavy-ion injector (HE-Linac) for the FAIR project was proposedas replacement for ...
The GSI linear accelerator UNILAC provides heavy ion beams at Coulomb barrier energies for search an...
A low energy beam line (1.4 MeV/u) behind the GSI High Charge State Injector (HLI) will provide cw-h...
A low energy beam line (1.4 MeV/u) behind the GSI High Charge State Injector (HLI) will provide cw-h...
The RF part of the new high current injector-linac HSI consists of five cavities with the new operat...
A low energy beam line (1.4 MeV/u) behind the GSI High Charge State Injector (HLI) will provide cw-h...
The present GSI-accelerator complex is foreseen to serve the future synchrotron SIS 100 [1] as an in...
To keep the ambitious Super Heavy Element (SHE) physics program at GSI competitive a superconducting...
The GSI UNILAC will serve as part of an injector system for the future FAIR facility, currently unde...
The UNILAC was improved for high current performance by replacing the Wideroe prestripper accelerato...
First acceleration of heavy ion beams with a superconducting continuous wave HIM/GSI CW-Linac After ...