Witness electron beam injection using an active plasma lens for a proton beam-driven plasma wakefield accelerator
S.-Y. Kim, K. Moon, M. Chung, K. N. Sjobak, E. Adli, S. Doebert, M., Dayyani, E. S. Yoon, I. Nam, G. Hahn

TL;DR
This paper investigates the use of an active plasma lens for final electron beam focusing in proton-driven plasma wakefield accelerators, demonstrating through simulations that it can maintain beam quality suitable for injection.
Contribution
The study provides the first detailed particle-in-cell simulation analysis of active plasma lens performance in proton-driven plasma wakefield acceleration, focusing on emittance growth and beam preservation.
Findings
Plasma wakefield amplitude remains stable after passing through the lens.
Emittance growth is minimal for certain charge and beam parameters.
Growth depends on plasma density, beam size, and Coulomb scattering.
Abstract
An active plasma lens focuses the beam in both the horizontal and vertical planes simultaneously using a magnetic field generated by a discharge current through the plasma. A beam size of 5--10 m can be achieved within a short distance using a focusing gradient on the order of 100 T/m. The active plasma lens is therefore an attractive element for plasma wakefield acceleration, because an ultra-small size of the witness electron beam is required for injection into the plasma wakefield to minimize emittance growth and to enhance the capturing efficiency. When the drive beam and witness electron beam co-propagate through the active plasma lens, interactions between the drive and witness beams, and the plasma must be considered. In this paper, through particle-in-cell simulations, we discuss the possibility of using an active plasma lens for the final focusing of the electron beam for…
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