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DOE OSTI · 2564503

Fully plasma-based electron injector for a linear collider or XFEL

Abstract

We demonstrate through high-fidelity particle-in-cell (PIC) simulations a simple approach for efficiently generating 20 + GeV electron beams with the necessary charge, energy spread, and emittance for use as an injector in a future linear collider or a next generation XFEL. A high quality injected bunch is generated by self-focusing an unmatched electron driver in a nonlinear plasma wakefield. Over pump depletion distances, the drive beam dynamics and self-loading effects lead to high energy, low-energy spread output beams. For plasma densities of 10 18 c⁢m −3 , PIC simulation results indicate that self-injected beams with 0.52 n⁢C charge can be accelerated to 20 GeV with projected core energy spreads of ≲ 1%, normalized slice emittances of 110n⁢m, peak normalized brightness of ≳ 10 19 A/m 2 /rad 2 , and transfer efficiencies of ≳ 44%.

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BibTeXRIS

Dalichaouch, T. N. [University of California, Los Angeles, CA (United States)] (ORCID:0000000247350150), Xu, X. L. [Peking University, Beijing (China); Beijing Laser Acceleration Innovation Center (China)], Li, F. [Tsinghua University, Beijing (China)] (ORCID:000000018627910X), Tsung, F. S. [University of California, Los Angeles, CA (United States)], Mori, W. B. [University of California, Los Angeles, CA (United States)]. 2025-05-05. Fully plasma-based electron injector for a linear collider or XFEL. https://doi.org/10.1103/physrevresearch.7.023118

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