CERN Accélérateur de science

Article
Report number LHC-PROJECT-Report-1156 ; CERN-LHC-PROJECT-Report-1156
Title LHC Transverse Feedback Damping Efficiency
Author(s) Kotzian, G (CERN) ; Höfle, Wolfgang (CERN) ; Vogel, E (DESY)
Publication 2008
Imprint 04 Sep 2008
Number of pages 4
In: 11th European Particle Accelerator Conference, Genoa, Italy, 23 - 27 Jun 2008, pp.THPP114
Subject category Accelerators and Storage Rings
Accelerator/Facility, Experiment CERN LHC
Abstract A simulation model has been developed to predict the damping efficiency of the LHC transverse feedback system in the presence of coupled bunch instabilities and under realistic assumptions for the injection error. The model tracks both the centre of gravity of a bunch and the r.m.s beam size during and after injection. It includes the frequency characteristic of the transverse feedback system. Nonlinearities in the beam optics will cause the bunches to filament and lead to an increase of the transverse emittance after injection. The resistive wall instability reduces the effectiveness of the transverse feedback by slowing down the damping process. Possibilities for enhancing the performance of the feedback system by signal processing schemes are outlined.
Copyright/License publication: (License: CC-BY)

Email contact: [email protected]


 Notice créée le 2008-09-04, modifiée le 2024-02-23


Preprint:
Télécharger le documentPDF
Lien externe:
Télécharger le documentPublished version from JACoW