EIC B0ApF EM Design – Work in Progress

Work performed by Ramesh Gupta on this and other EIC magnets can be found at:
https://wpw.bnl.gov/rgupta/eic-work-in-progress/, which will have a more complete and latest listing

  1. 500 mm B0ApF design with correctors, FC1 Tracking Meeting, July 29, 2026
  2. Relevance, Analysis and Context of the Test Results of the Optimum Integral Dipole B0ApF Built Under PBL/BNL STTR, July 28, 2026
  3. B0ApF with correctors: 400mm and 500mm options based on the Optimum Integral Design, June 24, 2026.
  4. Optimum Integral Design for B0ApF and em-design of BNL Cable Magnet Option for Q1ApF, SC IR Cryoassembly Status Tracking Meeting – FC1, and FC1 weekly tracking meeting, March 25, 2026.
  5. Optimum Integral Design of B0ApF with Correctors for the Updated Parameters (first look), February 3, 2006.
  6. Design, construction, and test of R&D dipole B0ApF for the EIC (https://www.appliedsuperconductivity.org/asc2026/).
  7. Updated Design of the EIC IR Dipole Magnet B0ApF, Abstract for ASC2026 (https://www.appliedsuperconductivity.org/asc2026/).
  8. B0ApF Status, FC1 Weekly Tracking Meeting, December 10, 2025.
  9. A New Medium Field Superconducting Magnet for the EIC, FY25 Nuclear Physics SBIR/STTR Phase II Exchange Meeting, July 30, 2025.
  10. Optimum Integral Design and It’s Application to EIC Magnets, Magnet Steering Group Meeting, July 25, 2025.
  11. Design, construction, and test of a superconducting dipole B0ApF based on the Optimum Integral Design (https://mt29-conf.org/), Thu-Mo-Or1-03, Boston, July 1 – 6, 2025 (abstract).
  12. Optimum Integral Dipole B0ApF, Magnet Steering Group Meeting, June 6, 2025.
  13. A Novel, Medium-field Optimum Integral Dipole, Presented at MT28 – International Conference on Magnet Technology (https://mt28.aoscongres.com/home!en), September 14, 2023.
  14. Another Phase I SBIR/STTR Proposal using the Direct Wind Technology, August 10, 2021
  15. Impact of Larger Collar and Tie Rods Holes in Q2pF Yoke, May 18, 2021

A 0.6 meter long B0ApF R&D dipole based on the Optimum Integral Design (OID) was designed, built and tested under Phase I (Summary, Narrative, Presentation, Report) and Phase II STTR (Summary, Narrative, Presentations) with the Particle Beam Lasers, Inc. (PBL).

See also Optimum Integral Design

See also