FAST Low-Energy Beamline Studies: Toward High-Peak 5D Brightness Beams for FAST-GREENS

Author:

Cropp Frederick1ORCID,Ruan Jinhao2,Santucci James2,MacLean Daniel2,Lumpkin Alex H.2,Hall Christopher C.3,Edelen Jonathan P.3,Murokh Alex4,Broemmelsiek Daniel2,Musumeci Pietro1

Affiliation:

1. Department of Physics and Astronomy, University of California, Los Angeles, Los Angeles, CA 90095, USA

2. Fermi National Accelerator Laboratory, Batavia, IL 60510, USA

3. RadiaSoft, Boulder, CO 80301, USA

4. RadiaBeam Technologies, Santa Monica, CA 90404, USA

Abstract

The FAST beamline is the injector for the planned Gamma-Ray Electron ENhanced Source (GREENS) program, which aims to achieve the demonstration and first application of a high-efficiency, high-average-power free-electron laser at 515 nm. FAST-GREENS requires high 5D peak brightness; transverse normalized projected emittances of 3 mm-mrad and a peak current of 600 A are the minimum beam requirements for the FEL to reach the 10% efficiency goal. In this work, studies of the low-energy section of the FAST beamline are presented toward these ends, including preliminary measurements of beam compression and beam emittance. An effort toward developing a high-fidelity simulation model that could be later optimized for FAST-GREENS is presented.

Funder

NSF

US Department of Energy Office of Science

Publisher

MDPI AG

Subject

Instrumentation

Reference23 articles.

1. IOTA (Integrable Optics Test Accelerator): Facility and experimental beam physics program;Antipov;J. Instrum.,2017

2. Musumeci, P., Agustsson, R., Amoudry, L., Broemmelsiek, D., Bruhwiler, D., Denham, P., Edelen, J., Fisher, A., Hall, C., and Hodgetts, T. (2022, January 12–17). FAST-GREENS: A High Efficiency Free Electron Laser Driven by Superconducting RF Accelerator. Proceedings of the 13th International Particle Accelerator Conference (IPAC’22), Bangkok, Thailand.

3. Tapering enhanced stimulated superradiant amplification;Duris;New J. Phys.,2015

4. High efficiency energy extraction from a relativistic electron beam in a strongly tapered undulator;Sudar;Phys. Rev. Lett.,2016

5. Single-pass high-efficiency terahertz free-electron laser;Fisher;Nat. Photonics,2022

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