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Lari, L.; Bracco, C.; Assmann, R.W.; Bertarelli, A.; Brugger, M.; Cerutti, F.; Dallocchio, A.; Ferrari, A.; Mauri, M.; Roesler, S.; Sarchiapone, L.; Vlachoudis, V.; Doyle, J.E.; Keller, L.; Lundgren, S.A.; Markiewicz, T.W.; Smith, J.C.
SLAC National Accelerator Laboratory (United States). Funding organisation: US Department of Energy (United States)2011
SLAC National Accelerator Laboratory (United States). Funding organisation: US Department of Energy (United States)2011
AbstractAbstract
[en] The Large Hadron Collider (LHC) collimation system is installed and commissioned in different phases, following the natural evolution of the LHC performance. To improve cleaning efficiency towards the end of the low beta squeeze at 7TeV, and in stable physics conditions, it is foreseen to complement the 30 highly robust Phase I secondary collimators with low impedance Phase II collimators. At this stage, their design is not yet finalized. Possible options include metallic collimators, graphite jaws with a movable metallic foil, or collimators with metallic rotating jaws. As part of the evaluation of the different designs, the FLUKA Monte Carlo code is extensively used for calculating energy deposition and studying material damage and activation. This report outlines the simulation approach and defines the critical quantities involved.
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2 Nov 2011; 3 p; EPAC'08: 11. European Particle Accelerator Conference; Genoa (Italy); 23-27 Jun 2008; AC02-76SF00515; Available from http://www.slac.stanford.edu/cgi-wrap/getdoc/slac-pub-14668.pdf; PURL: https://www.osti.gov/servlets/purl/1028703/; Conf.Proc.C0806233:wepp071,2008
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