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Design Study on the Superconducting Dipole Magnets with Non-Circular Aperture Coils in Application to Future Colliders
Abstract In the near future, superconducting magnets with a small beam aperture will be required for high energy proton colliders. These magnets are usually designed to have a circular coil aperture. Their coils have many wedges for the winding to arch over the aperture as a whole, and the wedges are used to reduce the higher multipole components in the magnetic field. In this paper, the structure of a non-circular aperture is introduced to remove the wedges from the coils. Two types of windings, eccentric and elliptic coils, are studied for use of Rutherford type cables. It is shown that these coils have inherent advantages in decreasing the higher multipole components.
Design Study on the Superconducting Dipole Magnets with Non-Circular Aperture Coils in Application to Future Colliders
Abstract In the near future, superconducting magnets with a small beam aperture will be required for high energy proton colliders. These magnets are usually designed to have a circular coil aperture. Their coils have many wedges for the winding to arch over the aperture as a whole, and the wedges are used to reduce the higher multipole components in the magnetic field. In this paper, the structure of a non-circular aperture is introduced to remove the wedges from the coils. Two types of windings, eccentric and elliptic coils, are studied for use of Rutherford type cables. It is shown that these coils have inherent advantages in decreasing the higher multipole components.
Design Study on the Superconducting Dipole Magnets with Non-Circular Aperture Coils in Application to Future Colliders
Ishibashi, Kenji (author) / Katase, Akira (author) / Hirabayashi, Hiromi (author)
Supercollider 1 ; 689-698
1989-01-01
10 pages
Article/Chapter (Book)
Electronic Resource
English
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