The FAIR heavy-ion synchrotrons SIS18 and SIS100 as part of the new FAIR accelerator facility at GSI will be operated at the "space charge limit" for light and heavy-ion beams. In SIS100 beam loss due to space charge induced resonance crossing should not exceed a few percent during the 1 s injection plateau. In order to further increase the beam intensities beyond the FAIR reference parameters, a new concept of (partial) space charge compensation by pulsed electron lenses is considered. We describe the general space charge compensation concept together with detailed simulations results. A prototype lens for SIS18 is presently under development and will be used to validate the concept. This new approach, aiming for mitigating the most promin...
Numerical simulation is a possible approach to evaluate and to understand space charge effects in th...
This work characterizes the half-integer stop band for various beam distributions in hadron synchrot...
The strong space charge regime of future operation of CERN’s circular particle accelerators is inves...
The SIS100 synchrotron as a part of the new Facility for Antiproton and Ion Research (FAIR) accelera...
The SIS100 synchrotron as a part of the new FAIR accelerator facility at GSI should be operated at t...
We report about recent advances in understanding space-charge dependent beam loss and emittance grow...
Beam loss due to space-charge is a major problem at current and future high intensity particle accel...
Recently, it was proposed to use negatively charged electron beams for compensation of beam-beam eff...
Recently, it was proposed to use negatively charged electron beams for compensation of beam-beam eff...
The electron gun to be built and tested within ARIES WP16 is designed for integration into an electr...
In any hadron synchrotron, the half-integer resonance is among the strongest effects limiting the ac...
At the frontend of an accelerator the transversal focusing suffers from high space charge forces. Sp...
A high energy electron beam tightly focused on a heavy material target is used to generate X-rays fr...
High-power accelerators are being studied for several projects including accelerator driven neutron ...
Abstract Space-charge effects have been identified as the most serious intensity limitation in the C...
Numerical simulation is a possible approach to evaluate and to understand space charge effects in th...
This work characterizes the half-integer stop band for various beam distributions in hadron synchrot...
The strong space charge regime of future operation of CERN’s circular particle accelerators is inves...
The SIS100 synchrotron as a part of the new Facility for Antiproton and Ion Research (FAIR) accelera...
The SIS100 synchrotron as a part of the new FAIR accelerator facility at GSI should be operated at t...
We report about recent advances in understanding space-charge dependent beam loss and emittance grow...
Beam loss due to space-charge is a major problem at current and future high intensity particle accel...
Recently, it was proposed to use negatively charged electron beams for compensation of beam-beam eff...
Recently, it was proposed to use negatively charged electron beams for compensation of beam-beam eff...
The electron gun to be built and tested within ARIES WP16 is designed for integration into an electr...
In any hadron synchrotron, the half-integer resonance is among the strongest effects limiting the ac...
At the frontend of an accelerator the transversal focusing suffers from high space charge forces. Sp...
A high energy electron beam tightly focused on a heavy material target is used to generate X-rays fr...
High-power accelerators are being studied for several projects including accelerator driven neutron ...
Abstract Space-charge effects have been identified as the most serious intensity limitation in the C...
Numerical simulation is a possible approach to evaluate and to understand space charge effects in th...
This work characterizes the half-integer stop band for various beam distributions in hadron synchrot...
The strong space charge regime of future operation of CERN’s circular particle accelerators is inves...