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Vacuum systems for the ILC helical undulator
/ Malyshev, O B (Daresbury ; Cockcroft Inst. Accel. Sci. Tech.) ; Scott, D J (Daresbury ; Cockcroft Inst. Accel. Sci. Tech.) ; Clarke, J A (Daresbury ; Cockcroft Inst. Accel. Sci. Tech.) ; Bailey, I R (Liverpool U. ; Cockcroft Inst. Accel. Sci. Tech.) ; Dainton, J B (Liverpool U. ; Cockcroft Inst. Accel. Sci. Tech.) ; Malysheva, L I (Liverpool U. ; Cockcroft Inst. Accel. Sci. Tech.) ; Barber, D P (DESY) ; Cooke, P (Liverpool U.) ; Baynham, E (Rutherford) ; Bradshaw, T (Rutherford) et al.
The International Linear Collider (ILC) positron source uses a helical undulator to generate polarized photons of ∼10MeV∼10MeV at the first harmonic. Unlike many undulators used in synchrotron radiation sources, the ILC helical undulator vacuum chamber will be bombarded by photons, generated by the undulator, with energies mostly below that of the first harmonic. [...]
EUROTEV-REPORT-2006-086.-
2007 - 28 p.
- Published in : J. Vac. Sci. Technol. A A 25 (2007) 791
Fulltext: PDF; External link: DESY
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2.
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Room Temperature Magnetic Determination of the Current Center Line for the ITER TF Coils
/ Lerch, Philippe (PSI, Villigen) ; Gabard, Alexander (PSI, Villigen) ; Buzio, Marco (CERN) ; Negrazus, Marco (PSI, Villigen) ; Baynham, Elwyn (Magnetech, Oxford) ; Sanfilippo, Stephane (PSI, Villigen) ; Foussat, Arnaud (CEA Cadarache)
The ITER tokamak includes 18 superconducting D-shaped toroidal field (IT) coils. Unavoidable shape deformations as well as assembly errors will lead to field errors, which can be modeled with the knowledge of the current center line (CCL). [...]
2014 - 4.
- Published in : IEEE Trans. Appl. Supercond. 24 (2014) 4201604
In : 23rd International Conference on Magnet Technology, Boston, MA, USA, 14 - 19 Jul 2013, pp.4201604
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3.
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4.
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Magnetic Measurement of the Current Center Line of the Toroidal Field Coil of ITER at Room Temperature
/ Deniau, L (CERN) ; Baynham, E (Rutherford) ; Buzio, M (CERN) ; Knaster, J (Euratom, St. Paul Lez Durance) ; Savary, F (CERN)
Geometrical deformations and assembly errors in the ITER Toroidal Field (TF) coils will lead to magnetic field perturbations, which could degrade plasma confinement and eventually lead to disruption. Extensive computational studies of the influence of coil deformations and assembly errors on plasma behavior have given the basis for definition of the geometric tolerance of the Current Centre Line (CCL) of the winding pack of the TF coil [...]
CERN-ATS-2012-048.-
Geneva : CERN, 2012 - 5 p.
- Published in : IEEE Trans. Appl. Supercond. 22 (2012) 9001704
Fulltext: PDF;
In : 22nd International Conference on Magnet Technology, Marseille, France, 12 - 16 Sep 2011
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5.
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MICE: the Muon Ionization Cooling Experiment. Step I: First Measurement of Emittance with Particle Physics Detectors
/ Bravar, U. (New Hampshire U.) ; Bogomilov, M. ; Karadzhov, Y. ; Kolev, D. ; Russinov, I. ; Tsenov, R. ; Wang, L. ; Xu, F.Y. ; Zheng, S.X. ; Bertoni, R. et al.
The Muon Ionization Cooling Experiment (MICE) is a strategic R&D project intended to demonstrate the only practical solution to providing high brilliance beams necessary for a neutrino factory or muon collider. [...]
arXiv:1110.1813 ; FERMILAB-CONF-11-934-AD.
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2011 - 9 p.
Fermilab Library Server - Full text - Fulltext
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6.
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Commissioning Test of ATLAS End-Cap Toroidal Magnets
/ Dudarev, A (CERN) ; ten Kate, H H J (CERN) ; Foussat, A (CERN) ; Benoit, P (CERN) ; Jeckel, M (CERN) ; Olyunin, A (CERN) ; Kopeykin, N (CERN) ; Stepanov, V (CERN) ; Deront, L (CERN) ; Olesen, G (CERN) et al.
The system of superconducting toroids in the ATLAS experiment at CERN consists of three magnets. The Barrel Toroid was assembled and successfully tested in 2006. [...]
2009
- Published in : IEEE Trans. Appl. Supercond. 19 (2009) 1307-1310
IEEE Published version, local copy: PDF;
In : Applied Superconductivity Conference 2008, Chicago, IL, USA, 17 - 22 Aug 2008, pp.1307-1310
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7.
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Magnetic Design and Code Benchmarking of the SMC (Short Model Coil) Dipole Magnet
/ Manil, P (CEA) ; Regis, F (CERN) ; Rochford, J (RAL) ; Fessia, P (CERN) ; Canfer, S (RAL) ; Baynham, E (RAL) ; Nunio, F (CEA) ; de Rijk, G (CERN) ; Védrine, P (CEA)
WP: 7: Super-conducting High Field Magnets for higher luminosities and energies
Task: 7.3: Models
The Short Model Coil (SMC) working group was set in February 2007 to complement the Next European Dipole (NED) program, in order to develop a short-scale model of a Nb33Sn dipole magnet. [...]
EuCARD-PUB-2009-004.
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2010.
Access to fulltext document - IEEE Published version, local copy
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8.
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The Design of the Positron Source for the International Linear Collider
/ Clarke, J A (Daresbury ; Cockroft Inst. ; Liverpool U.) ; Malyshev, O B (Daresbury) ; Scott, D J (Daresbury) ; Bailey, I R (Liverpool U.) ; Dainton, J B (Liverpool U.) ; Hock, K M (Liverpool U.) ; Jenner, L J (Liverpool U.) ; Malysheva, L I (Liverpool U.) ; Zang, L (Liverpool U.) ; Baynham, E (Rutherford) et al.
2008 - 3 p.
External link: Published version from JACoW
In : 11th European Particle Accelerator Conference, Genoa, Italy, 23 - 27 Jun 2008, pp.WEOBG03
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9.
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Design of the Photon Collimators for the ILC Positron Helical Undulator
/ Bungau, A (Manchester U.) ; Bailey, I R (Liverpool U.) ; Baynham, E (Rutherford) ; Bradshaw, T W (Rutherford) ; Brummitt, A J (Rutherford) ; Carr, F S (Rutherford) ; Clarke, J A (Daresbury) ; Collomb, N A (Daresbury) ; Dainton, J B (Liverpool U.) ; Hartin, A F et al.
2008 - 3 p.
External link: Published version from JACoW
In : 11th European Particle Accelerator Conference, Genoa, Italy, 23 - 27 Jun 2008, pp.MOPP008
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10.
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Depolarization and Beam-beam Effects at the Linear Collider
/ Moortgat-Pick, G A (Durham U.) ; Bailey, I R (Cockcroft Inst. Accel. Sci. Tech.) ; Barber, D P (DESY) ; Baynham, E (Rutherford) ; Bradshaw, T W (Rutherford) ; Brummitt, A J (Rutherford) ; Bungau, A (Manchester U.) ; Carr, F S (Rutherford) ; Clarke, J A (Daresbury) ; Dainton, J B (Liverpool U.) et al.
2008 - 3 p.
External link: Published version from JACoW
In : 11th European Particle Accelerator Conference, Genoa, Italy, 23 - 27 Jun 2008, pp.MOPP024
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