Conceptual Design of a 260 mm Bore 5 T Superconducting Curved Dipole Magnet for a Carbon Beam Therapy Gantry
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H. Felice | S. Caspi | M. Yoon | S. Caspi | H. Felice | R. Hafalia | D. Arbelaez | D. Robin | W. Wan | W. Wan | M. Yoon | C. Sun | R. Hafalia | C. Sun | D. Arbelaez | D. Robin
[1] P. Ferracin,et al. Design, Fabrication, and Test of a Superconducting Dipole Magnet Based on Tilted Solenoids , 2007, IEEE Transactions on Applied Superconductivity.
[2] Diego Arbelaez,et al. COMPACT BEAM DELIVERY SYSTEMS FOR ION BEAM THERAPY , 2011 .
[3] Mark D. Bird,et al. New concepts in transverse field magnet design , 2003 .
[4] R. K. Ursem. Multi-objective Optimization using Evolutionary Algorithms , 2009 .
[5] Shlomo Caspi,et al. The use of pressurized bladders for stress control of superconducting magnets , 2001 .
[6] David Robin,et al. Superconducting toroidal combined-function magnet for a compact ion beam cancer therapy gantry , 2011 .
[7] D. I. Meyer,et al. A new configuration for a dipole magnet for use in high energy physics applications , 1970 .
[8] Martin Berz,et al. COSY INFINITY version 8 , 1999 .
[9] P. Vedrine,et al. Overview and status of the Next European Dipole Joint Research Activity , 2006 .
[10] E. Griesmayer,et al. Beam-transport study of an isocentric rotating ion gantry with minimum number of quadrupoles , 2005 .
[11] M. J. Ball,et al. The double-helix dipole - a novel approach to accelerator magnet design , 2003 .
[12] C. Goodzeit,et al. Combined function magnets using double-helix coils , 2007, 2007 IEEE Particle Accelerator Conference (PAC).