We present an analytic method to minimize the magnetic cross-talk in twin-aperture cos θ dipoles. In the single-aperture cos θ layout, the coil design can be performed with an analytic approach, based on a sector coil approximation. This method allows a fast evaluation of the field harmonics and an almost exhaustive scan on the positions and dimensions of the sectors, for coil layouts made of a different number of sectors. This increases the probabilities to find the coil shape which best fits the specifications. In a twin-aperture arrangement, the magnetic cross-talk can be not negligible and, to the aim of an analytic minimization of the unwanted multipoles, an extension of the single-aperture sector model is required. This is the case of the recombination dipole D2 for the High Luminosity Large Hadron Collider (HL-LHC) and of the 16-T bending dipole for the Future Circular Collider (FCC). This analytical method has been used to find alternative coil designs for both dipoles.

A Method for Minimizing the Magnetic Cross Talk in Twin-Aperture cos θ Superconducting Dipoles

Ricci A. M.;Fabbricatore P.
2020-01-01

Abstract

We present an analytic method to minimize the magnetic cross-talk in twin-aperture cos θ dipoles. In the single-aperture cos θ layout, the coil design can be performed with an analytic approach, based on a sector coil approximation. This method allows a fast evaluation of the field harmonics and an almost exhaustive scan on the positions and dimensions of the sectors, for coil layouts made of a different number of sectors. This increases the probabilities to find the coil shape which best fits the specifications. In a twin-aperture arrangement, the magnetic cross-talk can be not negligible and, to the aim of an analytic minimization of the unwanted multipoles, an extension of the single-aperture sector model is required. This is the case of the recombination dipole D2 for the High Luminosity Large Hadron Collider (HL-LHC) and of the 16-T bending dipole for the Future Circular Collider (FCC). This analytical method has been used to find alternative coil designs for both dipoles.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11567/1222538
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