To minimize the risk of accident on personnel accessing the PS complex at CERN transfer lines are equipped with beam stoppers. They immediately shut the beam aperture whenever members of personnel enter an accelerator or test facility. Most of them consist of cores out of stainless steel designed for a proton beam-pulse energy at 9.0 kJ during the 70’s. Further data on the design history of the beam stoppers is scarce. With the current pulse energy at 35.0 kJ steel reaches its structural limits. Based on the current function of the core requirements on the structural and beam-interaction performance of beam stoppers for personnel safety are drawn. To meet those requirements a compact core compatible to all PS complex is developed, replacing...
Source at https://inspirehep.net/literature/1961952.In the framework of the CERN Large Hadron Collid...
The PSI proton accelerator delivers a maximun current of 2 mA (routinely 1.9 mA) at 590 MeV. Ongoing...
Final Report of the PS Radiation Working Group The Proton Synchrotron, inaugurated in 1959, plays a ...
The pictures show a new generation universal beam stopper that will be installed in different zones ...
The pictures shows a new generation universal beam stopper during the installation in Ps Booster tra...
The luminosity of the LHC particle accelerator at CERN is planned to be upgraded in the first half of...
In the Linear accelerator 3 (Linac 3) and Low Energy Ion Ring (LEIR) at CERN dedicated beam stoppers...
We propose to install a beam stopper in the TT10 transfer line from the PS to the SPS. This beam sto...
For the LHC Injectors Upgrade (LIU) at CERN, the two Proton Synchrotron (PS) internal dumps are rede...
This paper addresses the evolution, design, analysis and development of a novel approach for stoppin...
The Antiproton Decelerator Target (AD-Target) is a unique device responsible for the production of a...
For antiproton production at CERN, high‐energy (26 GeV/c), intense, and short proton beams are impac...
The future CERN Super Proton Synchrotron (SPS) internal dump (Target Internal Dump Vertical Graphite...
The LANSCE accelerator relies on a Radiation Security System to provide personnel protection from pr...
International audienceDuring the 5th Framework Program (FP5) the European Commission (EC) funded the...
Source at https://inspirehep.net/literature/1961952.In the framework of the CERN Large Hadron Collid...
The PSI proton accelerator delivers a maximun current of 2 mA (routinely 1.9 mA) at 590 MeV. Ongoing...
Final Report of the PS Radiation Working Group The Proton Synchrotron, inaugurated in 1959, plays a ...
The pictures show a new generation universal beam stopper that will be installed in different zones ...
The pictures shows a new generation universal beam stopper during the installation in Ps Booster tra...
The luminosity of the LHC particle accelerator at CERN is planned to be upgraded in the first half of...
In the Linear accelerator 3 (Linac 3) and Low Energy Ion Ring (LEIR) at CERN dedicated beam stoppers...
We propose to install a beam stopper in the TT10 transfer line from the PS to the SPS. This beam sto...
For the LHC Injectors Upgrade (LIU) at CERN, the two Proton Synchrotron (PS) internal dumps are rede...
This paper addresses the evolution, design, analysis and development of a novel approach for stoppin...
The Antiproton Decelerator Target (AD-Target) is a unique device responsible for the production of a...
For antiproton production at CERN, high‐energy (26 GeV/c), intense, and short proton beams are impac...
The future CERN Super Proton Synchrotron (SPS) internal dump (Target Internal Dump Vertical Graphite...
The LANSCE accelerator relies on a Radiation Security System to provide personnel protection from pr...
International audienceDuring the 5th Framework Program (FP5) the European Commission (EC) funded the...
Source at https://inspirehep.net/literature/1961952.In the framework of the CERN Large Hadron Collid...
The PSI proton accelerator delivers a maximun current of 2 mA (routinely 1.9 mA) at 590 MeV. Ongoing...
Final Report of the PS Radiation Working Group The Proton Synchrotron, inaugurated in 1959, plays a ...