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February 2, 2026JACOW0 citationsOpen Access

Optical properties of wigglers with high field-to-energy ratio

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SSSergei SeletskiyDKDmitry KayranGHGeorg Hoffstaetter

Key Points

  • This work aims to derive analytic formulas that describe the focusing and chromaticity of damping wigglers in electron cooling systems.
  • Derivation of analytic formulas for wiggler focusing and chromaticity.
  • Comparison of analytic results with beam tracking outcomes.
  • Optimization analysis for the Ring Electron Cooler design.
  • Established unique optical properties of wigglers with high field-to-energy ratios.
  • Validated the derived formulas against beam tracking results.
  • Improved understanding of chromaticity optimization in the Ring Electron Cooler.

Abstract

One of the options to bring electron cooling to high energies is to employ an electron storage ring, which utilizes damping wigglers to counteract emittance growth of electron bunches used to cool hadrons. An example of such a cooler is the Ring Electron Cooler (REC) that can find potential future applications in Electron Ion Collider. The REC is designed to operate at 150 MeV and requires wigglers with peak field of 2.4 T. This unique combination a strong field wiggler operated at a relatively low energy results in unusual optical properties. In this paper we derive analytic formulas for focusing and chromaticity of different wiggler options and compare analytic and beam tracking results. While our analysis was used to optimize chromaticity in the REC, the derived formulas have a general applicability to wigglers with a high field-to-energy ratio.

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Cite This Study

Seletskiy et al. (2026) studied this question.

synapsesocial.com/papers/6980fc91c1c9540dea80e6cdhttps://doi.org/10.18429/jacow-napac2025-tup073
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Design of ring electron cooler2026
  2. 2Design of a damping wiggler at SPring-8-II as a high-energy X-ray source2026
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  4. 4High energy cooling2024
  5. 5Dual-energy electron storage ring2024