Possibilities are studied for the optimization of EURISOL rare nuclide yields in specific regions of the nuclear chart by building the driver accelerator in a way that enables accelerating several additional beam species, to specific energies, besides the baseline 1 GeV proton beam. Nuclide production rates with these driver beams are compared to the production rates expected with the 1 GeV proton beam in the direct-production and the high-power-converter scenarios. Arguments are presented to show that several additional driver-beam scenarios could provide substantial benefit for the production of nuclides in specific regions of the nuclear chart. The quantitative values in this report are preliminary in the sense that they depend on assump...
There is considerable interest worldwide in the research which could be done at a next generation, a...
There is a requirement that the EURISOL driver accelerator will split the beam power (1 GeV x 5 mA) ...
High power proton driver accelerators are used to generate secondary particles at high intensities, ...
Possibilities are studied for the optimization of EURISOL rare nuclide yields in specific regions of...
Possibilities are studied for the optimization of EURISOL rare nuclide yields in specific regions of...
It is investigated to which extent the secondary-beam production at the EURISOL facility can be enha...
This paper describes briefly the result of the work done by the Driver Accelerator Task Group of the...
The EURISOL (European Isotope Separation Online) Design Study is addressing new high power target de...
A 1 GeV, 5 mA cw superconducting proton/H- linac, with the capability of supplying cw primary beam t...
EURISOL, the next European radioactive ion beam (RIB) facility calls for the development of target a...
Since the discovery of artificial radioactivity in 1935, nuclear scientists have developed tools to ...
The Eurisol Design Study has been initiated by the European Commission to demonstrate the feasibilit...
There is considerable interest worldwide in the research which could be done at a next generation, a...
Presentation of an upgraded linac scheme that allows, in addition to the 1 GeV proton beam, also acc...
As the most ambitious concept of isotope separation on line (ISOL) facility, EURISOL aims at produci...
There is considerable interest worldwide in the research which could be done at a next generation, a...
There is a requirement that the EURISOL driver accelerator will split the beam power (1 GeV x 5 mA) ...
High power proton driver accelerators are used to generate secondary particles at high intensities, ...
Possibilities are studied for the optimization of EURISOL rare nuclide yields in specific regions of...
Possibilities are studied for the optimization of EURISOL rare nuclide yields in specific regions of...
It is investigated to which extent the secondary-beam production at the EURISOL facility can be enha...
This paper describes briefly the result of the work done by the Driver Accelerator Task Group of the...
The EURISOL (European Isotope Separation Online) Design Study is addressing new high power target de...
A 1 GeV, 5 mA cw superconducting proton/H- linac, with the capability of supplying cw primary beam t...
EURISOL, the next European radioactive ion beam (RIB) facility calls for the development of target a...
Since the discovery of artificial radioactivity in 1935, nuclear scientists have developed tools to ...
The Eurisol Design Study has been initiated by the European Commission to demonstrate the feasibilit...
There is considerable interest worldwide in the research which could be done at a next generation, a...
Presentation of an upgraded linac scheme that allows, in addition to the 1 GeV proton beam, also acc...
As the most ambitious concept of isotope separation on line (ISOL) facility, EURISOL aims at produci...
There is considerable interest worldwide in the research which could be done at a next generation, a...
There is a requirement that the EURISOL driver accelerator will split the beam power (1 GeV x 5 mA) ...
High power proton driver accelerators are used to generate secondary particles at high intensities, ...