CERN Accelerating science

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1.
Analysis of Powering and Quench Protection of the SIGRUM Superconducting Combined-Function Dipole Magnet / Ferrentino, Vittorio (Naples U. ; CERN) ; Arpaia, Pasquale (Naples U. ; CERN) ; Gilardi, Antonio (SLAC) ; Karppinen, Mikko (CERN) ; Kokkinos, Charilaos ; Ravaioli, Emmanuele (CERN)
In particle accelerators devoted to hadron therapy treatments, the magnet design plays an essential role in ensuring the safety of the patients under treatment. An incorrect setting or malfunctioning may cause damage to healthy tissues and cells. [...]
2023 - 8 p. - Published in : IEEE Trans. Appl. Supercond. 33 (2023) 1-8
2.
The 16 T dipole development program for FCC and HE-LHC / Schoerling, Daniel (CERN) ; Arbelaez, Diego (LBNL, Berkeley) ; Auchmann, Bernhard (PSI, Villigen) ; Bajko, Marta (CERN) ; Ballarino, Amalia (CERN) ; Barzi, Emanuela (Fermilab) ; Bellomo, Giovanni (INFN, Milan) ; Benedikt, Michael (CERN) ; Izquierdo Bermudez, Susana (CERN) ; Bordini, Bernardo (CERN) et al.
A future circular collider (FCC) with a center-of-mass energy of 100 TeV and a circumference of around 100 km, or an energy upgrade of the LHC (HE-LHC) to 27 TeV require bending magnets providing 16 T in a 50-mm aperture. Several development programs for these magnets, based on Nb$_3$Sn technology, are being pursued in Europe and in the U.S. [...]
FERMILAB-PUB-19-400-TD.- 2019 - 9 p. - Published in : IEEE Trans. Appl. Supercond. 29 (2019) 4003109
3.
High Gradient Nb$_{3}$Sn Quadrupole Demonstrator MKQXF Engineering Design / Kokkinos, Charilaos (EAC Engineering P.C., Patras) ; Karppinen, Mikko (CERN)
The future upgrades of the CERN accelerator chain along with the future high-energy colliders, notably the future circular collider (FCC), will require high gradient quadrupoles. As part of the High Luminosity Large Hadron Collider (HL-LHC) project, the 11 T dipole was designed to be compatible with accelerator requirements and industrial production. [...]
2018 - 8 p. - Published in : IEEE Trans. Appl. Supercond. 28 (2018) 4006008
In : 25th International Conference on Magnet Technology, Amsterdam, The Netherlands, 27 Aug - 1 Sep 2017, pp.4006008
4.
FEA model and mechanical analysis of the Nb$_{3}$Sn 15-T dipole demonstrator / Kokkinos, Charilaos (FEAC Engineering P.C., Patras) ; Apostolidis, I (FEAC Engineering P.C., Patras) ; Carmichael, Justin (Fermilab) ; Gortsas, Theodore (Patras U.) ; Kokkinos, Sotiris (FEAC Engineering P.C., Patras) ; Loukas, Konstantinos (FEAC Engineering P.C., Patras) ; Novitski, Igor (Fermilab) ; Polyzos, Demosthenes (Patras U.) ; Rodopoulos, Dimitris (Patras U.) ; Schoerling, Daniel (CERN) et al.
Nb$_{3}$Sn magnets with a nominal operation field of ∼15 T are being considered for the large hadron collider (LHC) energy upgrade high-energy large hadron collider (HE-LHC) and a post-LHC future circular collider. To demonstrate the feasibility of 15-T accelerator quality dipole magnets, the U.S. [...]
2018 - 6 p. - Published in : IEEE Trans. Appl. Supercond. 28 (2018) 4007406
In : 25th International Conference on Magnet Technology, Amsterdam, The Netherlands, 27 Aug - 1 Sep 2017, pp.4007406

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6 Kokkinos, C
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