CERN Accelerating science

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1.
Chapter 16: 11T Dipole and New Connection Cryostats for Collimators / Bordini, Bernardo (CERN) ; Bottura, Luca (CERN) ; Devred, Arnaud (CERN) ; Fiscarelli, Lucio (CERN) ; Karppinen, Mikko (CERN) ; de Rijk, Gijs (CERN) ; Rossi, Lucio (CERN) ; Savary, Frédéric (CERN) ; Schörling, Daniel (CERN) ; Willering, Gerard (CERN)
This chapter describes the design of, and parameters for, the 11 T dipole [11] developed at FNAL and the European Organization for Nuclear Research (CERN) for the High Luminosity Large Hadron Collider (HL-LHC) project..
2024 - 19 p. - Published in : Adv. Ser. Direct. High Energy Phys. 31 (2024) 371-389 Fulltext: PDF;
In : The High Luminosity Large Hadron Collider, pp.371-389
2.
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
3.
Magnet technology and design of superconducting magnets for heavy ion gantry for hadron therapy / Lecrevisse, T (IRFU, Saclay) ; Kirby, G (CERN) ; Rossi, Lucio (Milan U. ; INFN, Milan) ; Carloni, Anna Giulia (INFN, Milan) ; Barna, Daniel (Wigner RCP, Budapest) ; Tommasini, Davide (CERN) ; Gautheron, Emma (CERN) ; Felcini, Enrico (CNAO, Milan) ; De Matteis, Ernesto (INFN, Milan) ; Prioli, Marco (INFN, Milan) et al.
Various initiatives in Europe have bene launched to study superconducting magnets for a rotatable gantry suitable for delivery up to 440 MeV/A carbon ions for hadron therapy. One initiative is led by INFN inside an agreement with CERN, CNAO and MedAustron aiming at designing and manufacturing a strongly curved costheta dipole (Rbending = 1.6 m) rated for 4 T central field and a ramp rate of 0.15-0.4 T/s. [...]
2023 - Published in : JACoW IPAC 2023 (2023) THPM041 Fulltext: PDF;
In : 14th International Particle Accelerator Conference (IPAC 2023), Venice, Italy, 7 - 12 May 2023, pp.THPM041
4.
Design of a Beam Separator for FLASH Electron Therapy Facilities / Korchevnyuk, Vera (Ecole Polytechnique, Lausanne ; CERN) ; Bauche, Jérémie (CERN) ; Karppinen, Mikko (CERN) ; Latina, Andrea (CERN) ; Russenschuck, Stephan (CERN) ; Seidel, Mike (Ecole Polytechnique, Lausanne) ; Tommasini, Davide (CERN)
A promising modality of radiation therapy is FLASH: a technique in which the full radiation dose is delivered in just 1/10th of a second. This modality has been proven successful in destroying cancerous cells while sparing healthy tissues. [...]
2024 - 5 p. - Published in : IEEE Trans. Appl. Supercond. 34 (2024) 4401005
5.
LHC Triplet Task Force Report / Arduini, Gianluigi (CERN) ; Bradu, Benjamin (CERN) ; Brodzinski, Krzysztof (CERN) ; Bruce, Roderik (CERN) ; Cerutti, Francesco (CERN) ; Ciccotelli, Alessia (University of Manchester (GB)) ; Deferne, Guy (CERN) ; Fartoukh, Stephane (CERN) ; Fessia, Paolo (CERN) ; Garion, Cedric (CERN) et al.
The excellent performance of the Large Hadron Collider (LHC) and the extension of Run 3 by one year have led to a significant increase of the expected integrated luminosity by the end of its operation and before the start of the High Luminosity LHC (HL-LHC), exceeding the design LHC integrated luminosity of 300 fb−1 for which the final focus region has been designed. [...]
CERN-ACC-2023-0004.
- 2023. - 95 p.
Full text
6.
Performance Study of the NIMMS Superconducting Compact Synchrotron for Ion Therapy with Strongly Curved Magnets / Norman, Hannah (U. Manchester (main)) ; Appleby, Robert (U. Manchester (main)) ; Benedetto, Elena (U. Geneva (main)) ; Karppinen, Mikko (CERN) ; Owen, Hywel (Daresbury) ; Sheehy, Suzanne (Melbourne U.)
Delivery of heavy ion therapy currently utilises normal conducting synchrotrons. For the future generation of clini- cal facilities, the accelerator footprint must be reduced while adopting beam intensities above 1 × 10¹⁰ particles per spill for more efficient, effective treatment. [...]
2022 - 4 p. - Published in : JACoW IPAC 2022 (2022) 3014-3017 Fulltext: PDF;
In : 13th International Particle Accelerator Conference (IPAC 2022), Bangkok, Thailand, 12 - 17 Jun 2022, pp.3014-3017
7.
SIGRUM - A SUPERCONDUCTING ION GANTRY WITH RIBONI’S UNCONVENTIONAL MECHANICS / Amaldi, Ugo (TERA Foundation (IT)) ; Alharbi, Nader (TERA Foundation (IT)) ; Benedetto, Elena (SEEIIST Association (CH)) ; Riboni, Pierluigi (TERA Foundation (IT)) ; Vaziri, Mohammad (TERA Foundation) ; Aguglia, Davide (CERN) ; Ferrentino, Vittorio (Universita e sezione INFN di Napoli (IT)) ; Le Godec, Gilles (CERN) ; Karppinen, Mikko (CERN) ; Perini, Diego (CERN) et al.
This report describes the conceptual design of a 430 MeV/u carbon ion gantry that is based on superconducting (SC) magnets and features a novel mechanical support [...]
CERN-ACC-NOTE-2021-0014 ; NIMMS-Note-002.
- 2021. - 34 p.
Full text
8.
Operation Experience with the LHC ACS RF System / Turaj, Katarzyna (CERN) ; Arnaudon, Luca (CERN) ; Baudrenghien, Philippe (CERN) ; Brunner, Olivier (CERN) ; Butterworth, Andrew (CERN) ; Gerigk, Frank (CERN) ; Karppinen, Mikko (CERN) ; Maesen, Pierre (CERN) ; Montesinos, Eric (CERN) ; Peauger, Franck (CERN) et al.
The LHC accelerating RF system consists of two cryomodules per beam, each containing four single-cell niobium sputtered 400.8 MHz superconducting cavities working at 4.5 K and an average accelerating voltage of 2 MV. The paper summarises the experience, availability and evolution of the system within 10 years of operation. [...]
SRF2019.- 2019 - 4 p. - Published in : 10.18429/JACoW-SRF2019-THP031 Fulltext: PDF;
In : 19th International Conference on RF Superconductivity, Dresden, Germany, 30 Jun - 05 Jul 2019, pp.913-916
9.
Nb$_{3}$Sn 11 T Dipole for the High Luminosity LHC (CERN) / Bordini, Bernardo (CERN) ; Bottura, Luca (CERN) ; Devred, Arnaud (CERN) ; Fiscarelli, Lucio (CERN) ; Karppinen, Mikko (CERN) ; de Rijk, Gijs (CERN) ; Rossi, Lucio (CERN ; Milan Bicocca U.) ; Savary, Frédéric (CERN) ; Willering, Gerard (CERN)
This chapter describes the design of, and parameters for, the 11 T dipole developed at the European Organization for Nuclear Research (CERN) for the High Luminosity Large Hadron Collider (HL-LHC) project. The results for testing the short models as well as the first 5 m long magnet are also presented. [...]
2019 - 36 p. - Published in : 10.1007/978-3-030-16118-7_9
In : Nb$_{3}$Sn accelerator magnets, pp.223-258
10.
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

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