CERN Accelerating science

All CERN Accelerators documents

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2025-04-04
11:15
Film badges and the access control system
CERN-LabII-RA-37-13-TN-72-1 - 1972 - 1.

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2025-04-04
06:39
II.9 - Beam instrumentation / Forck, Peter (Darmstadt, GSI)
The determination of beam parameters is essential for the operation and development of any accelerator facility. The working principle of frequently used beam instruments for electron and proton beams is discussed [...]
2024 - 190 p. - Published in : CERN Yellow Rep. School Proc. 3 (2024) 1339-1528 Fulltext: PDF;
In : Proceedings of the Joint Universities Accelerator School (JUAS) : Courses and exercises, Geneva, Switzerland, 27 Nov 2024, pp.1339-1528 (CERN-2024-003)

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2025-04-04
06:39
II.10 - Particle sources / Thuillier, Thomas (LPSC, Grenoble)
The particle sources create the beam which will next be used in accelerators. The chapter proposes an introduction to particle sources physics and technology. [...]
2024 - 72 p. - Published in : CERN Yellow Rep. School Proc. 3 (2024) 1529-1600 Fulltext: PDF;
In : Proceedings of the Joint Universities Accelerator School (JUAS) : Courses and exercises, Geneva, Switzerland, 27 Nov 2024, pp.1529-1600 (CERN-2024-003)

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2025-04-04
06:39
II.8 - Vacuum systems / Baglin, Vincent (CERN) ; Kersevan, Roberto (CERN)
Vacuum for accelerators is a transverse field across several engineering and scientific disciplines. This lecture introduces the fundamentals of vacuum science and technology and presents the main aspects with a special focus on particle accelerators. 
2024 - 80 p. - Published in : CERN Yellow Rep. School Proc. 3 (2024) 1259-1338 Fulltext: PDF;
In : Proceedings of the Joint Universities Accelerator School (JUAS) : Courses and exercises, Geneva, Switzerland, 27 Nov 2024, pp.1259-1338 (CERN-2024-003)

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2025-04-04
06:39
II.7 - Cryogenics for superconducting devices / Lebrun, Philippe (CERN)
This introduction to cryogenics focuses on the aspects of low-temperature science and technology applicable to the cooling of superconducting devices: properties of cryogenic fluids (helium and nitrogen) as compared to solid materials, refrigeration and liquefaction, heat transfer and thermal insulation, and use of cold vapour for thermal screening in cryostats and ancillaries such as current leads..
2024 - 15 p. - Published in : CERN Yellow Rep. School Proc. 3 (2024) 1243-1257 Fulltext: PDF;
In : Proceedings of the Joint Universities Accelerator School (JUAS) : Courses and exercises, Geneva, Switzerland, 27 Nov 2024, pp.1243-1257 (CERN-2024-003)

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2025-04-03
17:16
CAMAC module: output register
CERN-LabII-EA-Spec-75-21-C - 1975 - 2.

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2025-04-03
17:14
CAMAC module: 10 bit digital to analog converter
CERN-LabII-EA-Spec-75-21-B - 1975 - 2.

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2025-04-03
04:17
AWAKE Input to the European Strategy for Particle Physics Update on behalf of the AWAKE Collaboration / Gschwendtner, E. ; Muggli, P. ; Turner, M.
The Advanced Wakefield Experiment, AWAKE, is a well-established international collaboration and aims to develop the proton-driven plasma wakefield acceleration of electron bunches to energies and qualities suitable for first particle physics applications, such as strong-field QED and fixed target experiments ($\sim$50-200GeV). [...]
arXiv:2504.00577.
- 10.
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2025-04-03
04:14
SBN@CERN: A short-baseline neutrino beam at CERN for high-precision cross-section measurements / Acerbi, F. (Fond. Bruno Kessler, Trento ; TIFPA-INFN, Trento) ; Andreopoulos, C. (Liverpool U.) ; Angelis, I. (Aristotle U., Thessaloniki) ; Roldan, A. Baratto (CERN) ; Bomben, L. (INFN, Milan Bicocca ; Insubria U., Como) ; Bonesini, M. (INFN, Milan Bicocca) ; Bramati, F. (INFN, Milan Bicocca ; Milan Bicocca U. (main)) ; Branca, A. (INFN, Milan Bicocca ; Milan Bicocca U. (main)) ; Brizzolari, C. (INFN, Milan Bicocca ; Milan Bicocca U. (main)) ; Brunetti, G. (Milan Bicocca U. (main)) et al.
A new generation of neutrino cross-section experiments at the GeV scale is crucial in the precision era of oscillation physics and lepton flavor studies. [...]
arXiv:2503.21589.
- 46.
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2025-04-02
06:51
II.6 - Superconducting magnets / Ferracin, Paolo (LBNL, Berkeley)
This chapter summarizes the material covered on this subject during a course of about eight hours to provide an introduction on superconducting magnets for particle accelerators, and in particular dipole and quadrupole magnets, with low-temperature superconducting materials. The course, focusing on the basic principles, physical parameters, and analytical and numerical tools related to superconducting magnet design, is subdivided in five parts. 
2024 - 88 p. - Published in : CERN Yellow Rep. School Proc. 3 (2024) 1155-1242 Fulltext: PDF;
In : Proceedings of the Joint Universities Accelerator School (JUAS) : Courses and exercises, Geneva, Switzerland, 27 Nov 2024, pp.1155-1242 (CERN-2024-003)

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