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February 2, 2026JACOW0 citationsOpen Access

Progress report on two-bunch excitation of wakefield in dielectric structures

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CPCalcifer PhillipsBLBrendan LeungEGEdgar A. Gómez

Key Points

  • This research aims to investigate the multi-beam excitation of wakefields in dielectric-lined structures for pulse shortening and topology mapping.
  • Conducted experiments at Argonne Wakefield Accelerator using dielectric-lined structures.
  • Utilized a two-bunch beam configuration: one bunch to excite wakefields, the other as a probe.
  • Summarized the preparation and testing processes for the dielectric structures.
  • Achieved successful two-bunch wakefield excitation in dielectric structures.
  • Mapped transverse wakefield topology to aid in understanding wakefield dynamics.
  • Enhanced potential for shorter pulse generation in acceleration systems.

Abstract

Wakefield accelerators have the potential to achieve accelerating fields in the GV/m range, offering a promising path to more compact and cost-effective acceleration compared to conventional methods. Structure-based wakefield accelerator (SWFA) technology provides a viable approach to implementing beam-driven wakefield acceleration. An experiment at the Argonne Wakefield Accelerator (AWA) will utilize dielectric-lined structures to explore multi-beam excitation of wakefields for wakefield-pulse shortening and mapping of the transverse wakefield topology. These structures were commercially sourced and require a thin metallic film deposited on their outer surface. The first part of this paper summarizes the preparation of these structures. In parallel, a two-bunch beam configuration is required to support the experimental investigation, where one bunch excites the wakefield and the second serves as a loading or probe bunch. The experimental generation and testing of this two-bunch scheme at AWA are presented in this work.

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Cite This Study

Phillips et al. (2026) studied this question.

synapsesocial.com/papers/6980fbe1c1c9540dea80db19https://doi.org/10.18429/jacow-napac2025-wep049
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