To perform proton irradiation experiments, CERN built during LS1 a new irradiation facility in the East Area at the Proton Synchrotron accelerator. At this facility, named IR-RAD, a high-intensity 24 GeV/c proton beam is used. During beam steering and irradiation, the intensity and the transverse profile of the proton beam are monitored online with custom-made Beam Profile Monitor (BPM) devices. In this work, we present the design and the architecture of the IRRAD BPM system, some results on its performance with the proton beam, as well as its planned grades
International audienceMYRTE (MYRRHA Research Transmutation Endeavour) performs research to support t...
The new approach to the beam losses monitoring system (BLMS) creation is proposed. It is based on th...
The Advanced Proton Driven Plasma Wakefield Acceleration Experiment (AWAKE), based at CERN, explores...
In High Energy Physics (HEP) experiments, devices are frequently required to withstand a certain rad...
Materials and devices employed at the large CERN High Energy Physics (HEP) experiments and accelerat...
International audienceThe IRRAD proton irradiation facility at CERN was built during the Long Shutdo...
International audienceThe IRRAD tables are used to remotely control and position samples of differen...
A specially designed beam profile monitor (BPM) was produced to be assembled over a biased target pl...
The CERN Proton Irradiation Facility (IRRAD) is a reference facility for performing irradiation expe...
At iThemba LABS intense proton beams, accelerated in a K=200 MeV separated-sector cyclotron with a K...
Gescribed are beam profile monitors designed for the proton accelerators of the HERA project, namely...
We realized a prototype for a Beam Profile Monitor (BPRM) composed of 64 channels of scintillating a...
The new LINAC4 will provide 160 MeV H- ion beams for charge-exchange and proton injection into the C...
The proton and mixed-field irradiation facilities at the CERN PS East Area (known as IRRAD1 and IRRA...
The thesis focuses mainly on demonstrating the possibility to successfully employ a full-LINAC proto...
International audienceMYRTE (MYRRHA Research Transmutation Endeavour) performs research to support t...
The new approach to the beam losses monitoring system (BLMS) creation is proposed. It is based on th...
The Advanced Proton Driven Plasma Wakefield Acceleration Experiment (AWAKE), based at CERN, explores...
In High Energy Physics (HEP) experiments, devices are frequently required to withstand a certain rad...
Materials and devices employed at the large CERN High Energy Physics (HEP) experiments and accelerat...
International audienceThe IRRAD proton irradiation facility at CERN was built during the Long Shutdo...
International audienceThe IRRAD tables are used to remotely control and position samples of differen...
A specially designed beam profile monitor (BPM) was produced to be assembled over a biased target pl...
The CERN Proton Irradiation Facility (IRRAD) is a reference facility for performing irradiation expe...
At iThemba LABS intense proton beams, accelerated in a K=200 MeV separated-sector cyclotron with a K...
Gescribed are beam profile monitors designed for the proton accelerators of the HERA project, namely...
We realized a prototype for a Beam Profile Monitor (BPRM) composed of 64 channels of scintillating a...
The new LINAC4 will provide 160 MeV H- ion beams for charge-exchange and proton injection into the C...
The proton and mixed-field irradiation facilities at the CERN PS East Area (known as IRRAD1 and IRRA...
The thesis focuses mainly on demonstrating the possibility to successfully employ a full-LINAC proto...
International audienceMYRTE (MYRRHA Research Transmutation Endeavour) performs research to support t...
The new approach to the beam losses monitoring system (BLMS) creation is proposed. It is based on th...
The Advanced Proton Driven Plasma Wakefield Acceleration Experiment (AWAKE), based at CERN, explores...