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1.
Normal-Conducting Separation and Compensation Dipoles for the LHC Experimental Insertions / Ramberger, S (CERN) ; Bidon, S (CERN) ; Cornuet, D (CERN) ; Gérard, D (CERN) ; Gurov, D (Novosibirsk, IYF) ; Hans, O (CERN) ; Kalbreier, Willi (CERN) ; Kiselev, O (Novosibirsk, IYF) ; Morozov, I (Novosibirsk, IYF) ; Ogurtsov, A (Novosibirsk, IYF) et al.
The experimental insertions of the LHC make use of normal-conducting magnets to provide for part of the beam separation and to compensate the effect of two large spectrometer dipoles. Three different types with respect to the length were designed and are based on the same type of lamination. [...]
LHC-PROJECT-Report-878; CERN-LHC-Project-Report-878.- Geneva : CERN, 2006 - 5 p. - Published in : IEEE Trans. Appl. Supercond.
- Published in : , pp. 281-283 Access to fulltext document: PDF; Published version: PDF;
In : 19th International Conference on Magnet Technology, Genoa, Italy, 18 - 23 Sep 2005, pp.1642837
20th Russian Conference on Charged Particle Accelerators, Novosibirsk, Russia, 10 - 14 Sep 2006, pp.281-283
2.
Normal Conducting Separation Dipoles For The Lhc Beam Cleaning Insertions / Petrov, V (Novosibirsk, IYF) ; Bidon, S (CERN) ; de Rijk, G (CERN) ; Gerard, D (CERN) ; Hans, O (CERN) ; Kalbreier, Willi (CERN) ; Kiselev, O (Novosibirsk, IYF) ; Protopopov, I V (Novosibirsk, IYF) ; Pupkov, Yu (Novosibirsk, IYF) ; Ramberger, S (CERN) et al.
In the Large Hadron Collider (LHC), two straight sections, IR3 and IR7, will be dedicated to beam cleaning [1]. These cleaning insertions will be equipped with normal conducting magnets [...]
2004 External link: Published version from JACoW
In : 19th Russian Accelerator Conference, Dubna, Russian Federation, 4 - 9 Oct 2004, pp.496
3.
Normal Conducting Separation Dipoles for the LHC Beam Cleaning Insertions / Bidon, S ; Gerard, D ; Hans, O ; Kalbreier, Willi ; Kiselev, O ; Petrov, V ; Protopopov, I V ; Pupkov, Yu A ; Ramberger, S ; de Rijk, G et al.
In the Large Hadron Collider (LHC), two straight sections, IR3 and IR7, will be dedicated to beam cleaning. These cleaning insertions will be equipped with normal conducting magnets. [...]
LHC-Project-Report-714; CERN-LHC-Project-Report-714.- Geneva : CERN, 2004 - 5 p. - Published in : IEEE Trans. Appl. Supercond. 14 (2004) 437-440 Fulltext: cer-002444982 - PDF; lhc-project-report-714 - PDF;
In : 18th International Conference on Magnet Technology, Morioka, Japan, 20 - 24 Oct 2003, pp.437-440 - Please contact the library if you need to access this document.
4.
Construction and measurement of the pre-series twin aperture resistive quadrupole magnet for the LHC beam cleaning insertions / de Rijk, G ; Bidon, S ; Boter, E ; Clark, G S ; Hans, O ; Racine, M ; Salinas, A
CERN's Large Hadron Collider (LHC) requires 48 twin aperture resistive quadrupoles in the beam cleaning insertions. Canada is contributing these magnets to CERN in the framework of the TRIUMF-LHC collaboration contracts. [...]
2002 - Published in : IEEE Trans. Appl. Supercond. 12 (2002) 55-8 IEEE Published version, local copy: PDF;
In : 17th International Conference on Magnet Technology, CERN, Geneva, Switzerland, 24 - 28 Sep 2001, pp.55-8
5.
Steel septum magnets for the LHC beam injection and extraction / Bidon, S ; Gerard, D ; Guinand, M ; Gyr, Marcel ; Sassowsky, M ; Weisse, E ; Weterings, W ; Abramov, A ; Ivanenko, A I ; Kolatcheva, E et al.
The Large Hadron Collider (LHC) will be a superconducting accelerator and collider to be installed in the existing underground LEP ring tunnel at CERN. It will provide proton-proton collisions with a centre of mass energy of 14 TeV. [...]
CERN-SL-2002-019-MS.- Geneva : CERN, 2002 - 4 p. High Energy Circular Accelerators and Colliders; Report Access to fulltext document: PDF; External link: Published version from JACoW
In : 8th European Particle Accelerator Conference, Paris, France, 3 - 7 Jun 2002, pp.2514 - Please contact the library if you need to access this document.
6.
Proposal to Increase the LEP Energy with Horizontal Orbit Correctors / Beuret, A ; Bidon, S ; de Rijk, G ; Genand, R ; Raimondi, Pantaleo ; Wenninger, J
In an e+ e- collider the beam energy depends only on the bending field integral "Bds while the synchrotron radiation power scales with "B2ds and is sensitive to the details of the field distribution. [...]
CERN-SL-2000-014-MS.
- 2000. - 14 p.
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