Generating high quality ultrarelativistic electron beams using an evolving electron beam driver

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Abstract

A new method of controllable injection to generate high quality electron bunches in the nonlinear blowout regime driven by electron beams is proposed and demonstrated using particle-in-cell simulations. Injection is facilitated by decreasing the wake phase velocity through varying the spot size of the drive beam and can be tuned through the Courant-Snyder (CS) parameters. Two regimes are examined. In the first, the spot size is focused according to the vacuum CS beta function, while in the second, it is focused by the plasma ion column. The effects of the driver intensity and vacuum CS parameters on the wake velocity and injected beam parameters are examined via theory and simulations. For plasma densities of ∼1019 cm-3, particle-in-cell simulations demonstrate that peak normalized brightnesses ≳1020 A/m2/rad2 can be obtained with projected energy spreads of ≲1% within the middle section of the injected beam, and with normalized slice emittances as low as ∼10 nm.

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Dalichaouch, T. N., Xu, X. L., Li, F., Tableman, A., Tsung, F. S., An, W., & Mori, W. B. (2020). Generating high quality ultrarelativistic electron beams using an evolving electron beam driver. Physical Review Accelerators and Beams, 23(2). https://doi.org/10.1103/PHYSREVACCELBEAMS.23.021304

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