CERN Accelerating science

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1.
CEPC Technical Design Report: Accelerator / CEPC Study Group Collaboration
The Circular Electron Positron Collider (CEPC) is a large scientific project initiated and hosted by China, fostered through extensive collaboration with international partners. The complex comprises four accelerators: a 30 GeV Linac, a 1.1 GeV Damping Ring, a Booster capable of achieving energies up to 180 GeV, and a Collider operating at varying energy modes (Z, W, H, and ttbar). [...]
arXiv:2312.14363; IHEP-CEPC-DR-2023-01; IHEP-AC-2023-01.- 2024-06-03 - 1106 p. - Published in : Radiat. Detect. Technol. Methods 8 (2024) 1-1105 Fulltext: 2312.14363 - PDF; Publication - PDF;
2.
Quench Behavior of Prototype Nb-Ti HL-LHC Dipole Canted Cos-Theta Orbit Corrector Magnets / Wozniak, Mariusz (CERN) ; Ravaioli, Emmanuele (CERN) ; Mangiarotti, Franco (CERN) ; Mentink, Matthias (CERN) ; Kirby, Glyn (CERN) ; Verweij, Arjan (CERN) ; Xu, Qingjin (CAS, Beijing) ; Wu, Wei (CAS, Beijing)
The HL-LHC project is an upgrade of the LHC that requires double aperture dipole correctors. In 2015, CERN selected Canted Cos-Theta (CCT) magnet, and the development of the MCBRD magnets followed. [...]
2022 - 5 p. - Published in : IEEE Trans. Appl. Supercond. 32 (2022) 1-5 Fulltext: PDF;
3.
CEPC Conceptual Design Report: Volume 2 - Physics & Detector / CEPC Study Group Collaboration
The Circular Electron Positron Collider (CEPC) is a large international scientific facility proposed by the Chinese particle physics community to explore the Higgs boson and provide critical tests of the underlying fundamental physics principles of the Standard Model that might reveal new physics. [...]
arXiv:1811.10545 ; IHEP-CEPC-DR-2018-02 ; IHEP-EP-2018-01 ; IHEP-TH-2018-01.
- 2018 - 424.
Fulltext
4.
Design of a High Field ${\rm Nb}_{3}{\rm Al}$ Common Coil Magnet / Xu, Qingjin (KEK, Tsukuba) ; Sasaki, Kenichi (KEK, Tsukuba) ; Nakamoto, Tatsushi (KEK, Tsukuba) ; Terashima, Akio (KEK, Tsukuba) ; Tsuchiya, Kiyosumi (KEK, Tsukuba) ; Yamamoto, Akira (KEK, Tsukuba) ; Kikuchi, Akihiro (Tsukuba Magnet Lab.) ; Takeuchi, Takao (Tsukuba Magnet Lab.) ; Sabbi, Gian-Luca (LBNL, Berkeley) ; Caspi, Shlomo (LBNL, Berkeley) et al.
A high field Nb3Al common coil magnet is under development as an R&D; of "Advanced Superconducting Magnets for the LHC Luminosity Upgrade", in the framework of the CERN-KEK cooperation program. The goal of this research is to demonstrate the feasibility of high field magnet wound with Nb3Al cable. [...]
2010 - 4 p. - Published in : IEEE Trans. Appl. Supercond. 20 (2010) 176-179
In : 21st International Conference on Magnet Technology, Hefei, China, 18 - 23 Oct 2009, pp.176-179
5.
Concept for a Future Super Proton-Proton Collider / Tang, Jingyu (Beijing, Inst. High Energy Phys.) ; Berg, J. Scott (Brookhaven) ; Chai, Weiping (Lanzhou, Inst. Modern Phys.) ; Chen, Fusan (Beijing, Inst. High Energy Phys.) ; Chen, Nian (Tsinghua U., Beijing) ; Chou, Weiren (Fermilab) ; Dong, Haiyi (Beijing, Inst. High Energy Phys.) ; Gao, Jie (Beijing, Inst. High Energy Phys.) ; Han, Tao (Pittsburgh U.) ; Leng, Yongbin (Shanghai SSRF ; SINAP, Shanghai) et al.
Following the discovery of the Higgs boson at LHC, new large colliders are being studied by the international high-energy community to explore Higgs physics in detail and new physics beyond the Standard Model. [...]
arXiv:1507.03224.
- 2015. - 34 p.
Full text - Fulltext
6.
Design Optimization of the New D1 Dipole for HL-LHC Upgrade / Xu, Qingjin (KEK, Tsukuba) ; Nakamoto, Tatsushi (KEK, Tsukuba) ; Iio, Masami (KEK, Tsukuba) ; Ogitsu, Toru (KEK, Tsukuba) ; Sasaki, Kenichi (KEK, Tsukuba) ; Yamamoto, Akira (KEK, Tsukuba) ; Todesco, Ezio (CERN) ; Auchmann, Bernhard (CERN)
The High-Luminosity Large Hadron Collider upgrade (LHC) project aims to increase the peak luminosity of the LHC to 5 ×10^34 cm ^- 2s ^- 1, and a total integrated luminosity of 3000 fb ^- 1 from 2020 to 2030 by upgrading the low-beta insertion system for the ATLAS and CMS experiments. The aperture of the insertion magnets including the focusing/defocusing quadrupoles and separation dipoles will be doubled to achieve a smaller β*. [...]
2014 - 4 p. - Published in : IEEE Trans. Appl. Supercond. 24 (2014) 4000104
In : 23rd International Conference on Magnet Technology, Boston, MA, USA, 14 - 19 Jul 2013, pp.4000104

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