For superconducting (sc) accelerator sections operating at low and medium beam energies very compact accelerating-focusing structures are strongly required, as well as short focusing periods, high accelerating gradients and very short drift spaces. The Facility for Antiproton and Ion Research (FAIR) is going to use heavy ion beams with extremely high peak current from UNiversal Linear ACcelerator (UNILAC) and the synchrotron SIS18 as an injector for the SIS100. To keep the GSI-Super Heavy Element program competitive on a high level and even beyond, a standalone sc continuous wave LINAC in combination with the upgraded GSI High Charge State injector is envisaged. In preparation for this, testing of the first LINAC section (financed by HIM an...
The demonstrator is a prototype of the first section of the proposed cw-LINAC@GSI, comprising a supe...
A multi-stage program for the development of a heavy ion superconducting (sc) continuous wave (cw) l...
Future research programs at GSI in the field super heavy element (SHE) synthesis require high intens...
Recently the Universal Linear Accelerator (UNILAC) serves as a powerful high duty factor (25%) heavy...
Recently the Universal Linear Accelerator (UNILAC) serves as a powerful high duty factor (25%) heavy...
Recently the Universal Linear Accelerator (UNILAC) serves as a powerful high duty factor (25%) heavy...
The FAIR@GSI accelerator facility will require the GSI-UNILAC to provide short heavy ion pulses of h...
At GSI a new, superconducting (sc) continuous wave (cw) LINAC is under design in cooperation with th...
The upcoming FAIR (Facility for Antiproton and Ion Research) project at GSI will use the existing UN...
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...
A low energy beam line (1.4 MeV/u) behind the GSI High Charge State Injector (HLI) will provide cw-h...
Recently the first section of a standalone superconducting (sc) continuous wave (cw) heavy ion Linac...
To keep the ambitious Super Heavy Element (SHE) physics program at GSI competitive a superconducting...
For future experiments with heavy ions near the coulomb barrier within the SHE (super-heavy elements...
The demonstrator is a prototype of the first section of the proposed cw-LINAC@GSI, comprising a supe...
A multi-stage program for the development of a heavy ion superconducting (sc) continuous wave (cw) l...
Future research programs at GSI in the field super heavy element (SHE) synthesis require high intens...
Recently the Universal Linear Accelerator (UNILAC) serves as a powerful high duty factor (25%) heavy...
Recently the Universal Linear Accelerator (UNILAC) serves as a powerful high duty factor (25%) heavy...
Recently the Universal Linear Accelerator (UNILAC) serves as a powerful high duty factor (25%) heavy...
The FAIR@GSI accelerator facility will require the GSI-UNILAC to provide short heavy ion pulses of h...
At GSI a new, superconducting (sc) continuous wave (cw) LINAC is under design in cooperation with th...
The upcoming FAIR (Facility for Antiproton and Ion Research) project at GSI will use the existing UN...
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...
A low energy beam line (1.4 MeV/u) behind the GSI High Charge State Injector (HLI) will provide cw-h...
Recently the first section of a standalone superconducting (sc) continuous wave (cw) heavy ion Linac...
To keep the ambitious Super Heavy Element (SHE) physics program at GSI competitive a superconducting...
For future experiments with heavy ions near the coulomb barrier within the SHE (super-heavy elements...
The demonstrator is a prototype of the first section of the proposed cw-LINAC@GSI, comprising a supe...
A multi-stage program for the development of a heavy ion superconducting (sc) continuous wave (cw) l...
Future research programs at GSI in the field super heavy element (SHE) synthesis require high intens...