Instabilities driven by the transverse impedance are proven to be one of the limitations for the high intensity reach of the CERN PS. Since several years, fast single bunch vertical instability at transition energy has been observed with the high intensity bunch serving the neu-tron Time-of-Flight facility (n-ToF). In order to better understand the instability mechanism, a dedicated meas-urement campaign took place. The results were compared with macro-particle simulations with PyHEADTAIL based on the new impedance model developed for the PS. Instability threshold and growth rate for different longitu-dinal emittances and beam intensities were studied
Intensity-driven beam instabilities are studied in simulations with a refined impedance model and in...
Upgrades of the CERN particle accelerators complex are planned to increase the potential of physics ...
The subject of this paper will be the transverse stability in the SPS of the high intensity fixed ta...
Instabilities driven by the transverse impedance are proven to be one of the limitations for the hig...
The CERN Proton Synchrotron (PS) routinely crosses transition energy at around 6 GeV in order to acc...
The CERN Proton Synchrotron (PS) routinely crosses transition energy at around 6 GeV in order to acc...
Transition crossing in the CERN PS is critical for the stability of high intensity beams, even with ...
Transition crossing in the CERN PS is critical for the stability of high intensity beams, even with ...
The longitudinal single bunch instability observed in the SPS leads to uncontrolled emittance blow-u...
Since 2003, high-intensity single-bunch proton beams with low longitudinal emittance have been affec...
The High Luminosity (HL)-LHC project at CERN aims at a luminosity increase by a factor ten and one o...
The base-line scenario for the High-Luminosity LHC upgrade foresees an intensity increase delivered ...
The High-Luminosity upgrade of the CERN LHC will increase the performance of the accelerator and the...
Machine study experiments have been performed at the CERN PS during the week of June 18th, 2012, wit...
In the framework of the LHC Injectors Upgrade (LIU), beams with about twice the intensity compared t...
Intensity-driven beam instabilities are studied in simulations with a refined impedance model and in...
Upgrades of the CERN particle accelerators complex are planned to increase the potential of physics ...
The subject of this paper will be the transverse stability in the SPS of the high intensity fixed ta...
Instabilities driven by the transverse impedance are proven to be one of the limitations for the hig...
The CERN Proton Synchrotron (PS) routinely crosses transition energy at around 6 GeV in order to acc...
The CERN Proton Synchrotron (PS) routinely crosses transition energy at around 6 GeV in order to acc...
Transition crossing in the CERN PS is critical for the stability of high intensity beams, even with ...
Transition crossing in the CERN PS is critical for the stability of high intensity beams, even with ...
The longitudinal single bunch instability observed in the SPS leads to uncontrolled emittance blow-u...
Since 2003, high-intensity single-bunch proton beams with low longitudinal emittance have been affec...
The High Luminosity (HL)-LHC project at CERN aims at a luminosity increase by a factor ten and one o...
The base-line scenario for the High-Luminosity LHC upgrade foresees an intensity increase delivered ...
The High-Luminosity upgrade of the CERN LHC will increase the performance of the accelerator and the...
Machine study experiments have been performed at the CERN PS during the week of June 18th, 2012, wit...
In the framework of the LHC Injectors Upgrade (LIU), beams with about twice the intensity compared t...
Intensity-driven beam instabilities are studied in simulations with a refined impedance model and in...
Upgrades of the CERN particle accelerators complex are planned to increase the potential of physics ...
The subject of this paper will be the transverse stability in the SPS of the high intensity fixed ta...