2000IEEE Transactions on Applied SuperconductivityRequires access

Development of the 11 T Nb/sub 3/Sn dipole model at Fermilab

G. Ambrosio, N. Andreev, T. Arkan, E.A.Z. Barzi, S. Caspi, D.R. Chichili, K. Chow, V.V. Kashikhin, P. Limon, Alexander Makarov, J. Ozelis, I. Terechkine, J. Tompkins, M. Wake, Sachin Yadav, Ryosuke Yamada, V.A. Yarba, A.V. Zlobin

Open publisher page 15 citations

Abstract

A one meter long Nb/sub 3/Sn dipole model with 11 T nominal magnetic field in a 43.5 mm bore is being developed at Fermilab in collaboration with LBNL and KEK as part of the R&D efforts for a future Very Large Hadron Collider. This paper describes the magnet design and fabrication procedure as well as summarizes the results of magnetic, mechanical and quench protection analyses. The main parameters of superconducting strand and cable are also reported.

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What this paper is about

A one meter long Nb/sub 3/Sn dipole model with 11 T nominal magnetic field in a 43.5 mm bore is being developed at Fermilab in collaboration with LBNL and KEK as part of the R&D efforts for a future Very Large Hadron Collider. This paper describes the magnet design and fabrication procedure as well as summarizes the results of magnetic, mechanical and quench protection analyses. The main parameters of superconducting strand and cable are also reported.

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Available abstract

A one meter long Nb/sub 3/Sn dipole model with 11 T nominal magnetic field in a 43.5 mm bore is being developed at Fermilab in collaboration with LBNL and KEK as part of the R&D efforts for a future Very Large Hadron Collider. This paper describes the magnet design and fabrication procedure as well as summarizes the results of magnetic, mechanical and quench protection analyses. The main parameters of superconducting strand and cable are also reported.

Key concepts: Fermilab, Superconducting magnet, Niobium-tin, Dipole, Physics, Magnet, Superconducting Super Collider, Large Hadron Collider

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