3 T Superferric Dipole for JLEIC - CDR
Peter McIntyre

TL;DR
This paper presents the conceptual design of a 3 Tesla superferric dipole magnet for the JLEIC collider, featuring innovative superconducting cable technology for improved performance and reliability.
Contribution
It introduces a novel superconducting cable-in-conduit winding that enhances stress management, field uniformity, and cryogenic efficiency in collider magnets.
Findings
Design achieves high field homogeneity and stress control.
The CIC winding supports rapid cycling and beam loss management.
The report provides a comprehensive conceptual framework for the magnet.
Abstract
The full conceptual design report is presented for the 3 T superferric dipole for the proposed electron-ion collider JLEIC. It features a novel superconducting cable-in-conduit (CIC) winding that provides stress management, excellent field homegeneity, and volumetric cryogen flow to support rapid cycling and beam losses.
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Taxonomy
TopicsSuperconducting Materials and Applications · Particle accelerators and beam dynamics · Particle Accelerators and Free-Electron Lasers
