The prediction of the transverse wall beam impedance at the first unstable betatron line (8 kHz) of the CERN Large Hadron Collider (LHC) is of paramount importance for understanding and controlling the related coupled-bunch instabilities. Until now only novel analytical formulas were available at this frequency. Recently, laboratory measurements and numerical simulations were performed to cross-check the analytical predictions. The experimental results based on the measurement of the variation of a probe coil inductance in the presence of (i) sample graphite plates, (ii) stand-alone LHC collimator jaws, and (iii) a full LHC collimator assembly are presented in detail. The measurement results are compared to both analytical theories and simu...
Upgrades of the CERN particle accelerators complex are planned to increase the potential of physics ...
The results of simulation of trapped modes in LHC (phase 1) secondary collimators are presented. Bot...
For frequencies below 10 MHz the classical two wire transmission line method is subject to difficult...
The prediction of the transverse wall beam impedance at the first unstable betatron line (8kHz) of t...
The prediction of the transverse wall beam impedance at the first unstable betatron line (8 kHz) of ...
The prediction of the resistive wall transverse beam impedance at the first unstable betatron line (...
The prediction of the resistive wall transverse beam impedance at the first unstable betatron line (...
The resistive wall impedance of cylindrical vacuum chambers was first calculated over 40 years ago. ...
The High Luminosity LHC project is aimed at increasing the LHC luminosity by an order of magnitude. ...
The High Luminosity LHC project is aimed at increasing the LHC luminosity by an order of magnitude. ...
The High Luminosity LHC project is aimed at increasing the LHC luminosity by an order of magnitude. ...
The low-frequency transverse collimator impedance constitutes a major part of the LHC impedance budg...
The transverse impedance in the LHC is expected to be dominated by the numerous collimators, most of...
One of the key sources of transverse impedance in the LHC has been the secondary graphite collimator...
The low frequency longitudinal and transverse beam impedances of the CERN Large Hadron Collider (LHC...
Upgrades of the CERN particle accelerators complex are planned to increase the potential of physics ...
The results of simulation of trapped modes in LHC (phase 1) secondary collimators are presented. Bot...
For frequencies below 10 MHz the classical two wire transmission line method is subject to difficult...
The prediction of the transverse wall beam impedance at the first unstable betatron line (8kHz) of t...
The prediction of the transverse wall beam impedance at the first unstable betatron line (8 kHz) of ...
The prediction of the resistive wall transverse beam impedance at the first unstable betatron line (...
The prediction of the resistive wall transverse beam impedance at the first unstable betatron line (...
The resistive wall impedance of cylindrical vacuum chambers was first calculated over 40 years ago. ...
The High Luminosity LHC project is aimed at increasing the LHC luminosity by an order of magnitude. ...
The High Luminosity LHC project is aimed at increasing the LHC luminosity by an order of magnitude. ...
The High Luminosity LHC project is aimed at increasing the LHC luminosity by an order of magnitude. ...
The low-frequency transverse collimator impedance constitutes a major part of the LHC impedance budg...
The transverse impedance in the LHC is expected to be dominated by the numerous collimators, most of...
One of the key sources of transverse impedance in the LHC has been the secondary graphite collimator...
The low frequency longitudinal and transverse beam impedances of the CERN Large Hadron Collider (LHC...
Upgrades of the CERN particle accelerators complex are planned to increase the potential of physics ...
The results of simulation of trapped modes in LHC (phase 1) secondary collimators are presented. Bot...
For frequencies below 10 MHz the classical two wire transmission line method is subject to difficult...