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RIS citation export for WE3C4: Simulated Behavior of CNT Wires Irradiated in the HiRadMat Experimental Line at CERN

TY  - CONF
AU  - Mariet, A.
AU  - Devel, M.
AU  - Groetz, J.E.
AU  - Mikhalchan, A.
AU  - Moser, B.
AU  - Veness, R.
AU  - Vilatela, J.J.
ED  - Forck, Peter
ED  - Wawrzyniak, Adriana
ED  - Schaa, Volker R.W.
ED  - Kowalski, Grzegorz W.
ED  - Cudek, Agnieszka (SOLARIS, Kraków
TI  - Simulated Behavior of CNT Wires Irradiated in the HiRadMat Experimental Line at CERN
J2  - Proc. of IBIC2022, Kraków, Poland, 11-15 September 2022
CY  - Kraków, Poland
T2  - International Beam Instrumentation Conference
T3  - 11
LA  - english
AB  - With the planned increase of luminosity at CERN for HL-LHC and FCC, instruments for beam quality control must meet new challenges. The current wires, made up of plain carbon fibers and gold-plated tungsten would be damaged due to their interactions with the higher luminosity beams. We are currently testing a new and innovative material, with improved performance: carbon nanotube fibers (CNTF). The HiRadMat (High Radiation for Material) experimental line at the output of the SPS is a user facility which can irradiate fix targets up to 440 GeV/c. CNTF with various diameters were irradiated in HiRadMat with different intensities, later imaged with a SEM microscope and tested for their mechanical properties. In addition, simulations have been carried out with the FLUKA particle physics Monte-Carlo code, in order to better understand the mechanisms and assess the energy deposition from protons at 440 GeV/c in those CNTF wires, depending mainly on their diameters and densities. This could lead to a good estimation of the CNTF temperature during irradiation. In this contribution, we first present the HiRadMat experimental setup and then we discuss the results of our FLUKA simulations.
PB  - JACoW Publishing
CP  - Geneva, Switzerland
SP  - 527
EP  - 531
KW  - proton
KW  - electron
KW  - radiation
KW  - experiment
KW  - site
DA  - 2022/12
PY  - 2022
SN  - 2673-5350
SN  - 978-3-95450-241-7
DO  - doi:10.18429/JACoW-IBIC2022-WE3C4
UR  - https://jacow.org/ibic2022/papers/we3c4.pdf
ER  -