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RIS citation export for MOPAB003: Energy Deposition in the Betatron Collimation Insertion of the 100 TeV Future Circular Collider

TY - CONF
AU - Besana, M.I.
AU - Bahamonde Castro, C.
AU - Bertarelli, A.
AU - Bruce, R.
AU - Carra, F.
AU - Cerutti, F.
AU - Ferrari, A.
AU - Fiascaris, M.
AU - Lechner, A.
AU - Mereghetti, A.
AU - Redaelli, S.
AU - Skordis, E.
AU - Vlachoudis, V.
ED - Schaa, Volker RW
ED - Arduini, Gianluigi
ED - Pranke, Juliana
ED - Seidel, Mike
ED - Lindroos, Mats
TI - Energy Deposition in the Betatron Collimation Insertion of the 100 TeV Future Circular Collider
J2 - Proc. of IPAC2017, Copenhagen, Denmark, 14–19 May, 2017
C1 - Copenhagen, Denmark
T2 - International Particle Accelerator Conference
T3 - 8
LA - english
AB - The FCC proton beam is designed to carry a total energy of about 8500 MJ, a factor of 20 above the LHC. In this context, the collimation system has to deal with extremely tight requirements to prevent quenches and material damage. A first layout of the betatron cleaning insertion was conceived, adapting the present LHC collimation system to the FCC lattice. A crucial ingredient to assess its performance, in particular to estimate the robustness of the protection devices and the load on the downstream elements, is represented by the simulation of the particle shower generated at the collimators, allowing detailed energy deposition estimations. This paper presents the first results of the simulation chain starting from the proton losses generated with the Sixtrack-FLUKA coupling, as currently done for the present LHC and for its upgrade. Expectations in terms of total power, peak power density and integrated dose on the different accelerator components are presented.
PB - JACoW
CP - Geneva, Switzerland
SP - 68
EP - 71
KW - dipole
KW - insertion
KW - proton
KW - betatron
KW - simulation
DA - 2017/05
PY - 2017
SN - 978-3-95450-182-3
DO - 10.18429/JACoW-IPAC2017-MOPAB003
UR - http://jacow.org/ipac2017/papers/mopab003.pdf
ER -