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February 2, 2026JACOW0 citationsOpen Access

Low-charge, high-resolution beamline preparation for the nanopatterned microbunching experiment at Argonne Wakefield Accelerator

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RMRachel Margraf-O'NealAOAlexander OdyArgonne National LaboratoryJPJohn Power

Key Points

  • This research aims to demonstrate the feasibility of converting transverse modulations in electron beams into microbunch trains via the EEX beamline.
  • Utilized low normalized emittance electron bunches (~50 nm·rad) and low charges (~1pC).
  • Employed transverse diagnostics with high resolution (1-3 microns) to analyze the beam modulation.
  • Implemented a design for a new compact free-electron laser system.
  • Achieved required conditions for low charge and low emittance electron bunches.
  • Demonstrated successful preparation of high-resolution diagnostics for beam analysis.
  • Proposed microbunching technique shows promise for enabling nano-scale advancements in laser technology.

Abstract

The emittance exchange (EEX) beamline at the Argonne Wakefield Accelerator (AWA) is designed to transfer properties of an electron beam phase space between the transverse and longitudinal planes. Recently, it has been proposed this beamline could be used to convert a microscale transverse modulation created by a TEM grid into a microbunch train in the longitudinal plane. Such a technique would be useful for obtaining nano-scale microbunching that does not rely on the sensitive process of FEL gain. This new approach has been proposed to enable development of a compact free-electron laser at Arizona State, greatly reducing size and cost compared with existing short wavelength FELs. To perform an exploratory demonstration of this concept at AWA, this experiment requires low normalized emittance (~50 nm·rad), low charge (~1pC) electron bunches, and transverse diagnostics with high-resolution (1-3 microns) and high-light-collection to resolve the modulation on the electron beam. This report will give a progress update on preparing the necessary beams and diagnostics at AWA for an emittance exchange experiment that would produce 100s of nm scale microbunches.

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Cite This Study

Margraf-O'Neal et al. (2026) studied this question.

synapsesocial.com/papers/6980fd60c1c9540dea80f24ehttps://doi.org/10.18429/jacow-napac2025-mop055
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Also Consider

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

  1. 1Generation of low-emittance bunches with selective collimation at the Argonne Wakefield Accelerator2026
  2. 2Start-to-end simulations of nanometer-emittance beam transport through an emittance exchange beamline2026
  3. 3A W-band corrugated waveguide for high-efficiency high-gradient wakefield acceleration2026
  4. 4Upgraded photoinjector laser pulse train generator at the Argonne Wakefield Accelerator2026
  5. 5Ultra-high-brightness and tuneable attosecond-long electron beams with the laser wake field acceleration2025