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Magnetizing nonlinear plasma wakefields for positron acceleration

Published 31 Aug 2026 in physics.acc-ph and physics.plasm-ph | (2608.30455v1)

Abstract: It is known that only a narrow plasma wakefield sliver in the electron-beam-driven blowout regime suits positron acceleration. Using 3D simulations, we show that matching the cyclotron frequency ω<em>cω<em>{c} with the plasma frequency ω</em>pω</em>{p} forms a stable electron column on axis, expanding the suitable phase space for positron acceleration sizably. For a plasma density np=10<sup>16</sup> cm<sup>3n_p = 10<sup>{16}\text{</sup> cm}<sup>{-3} in a 35 T field, the interval expands 4.3 times, and a witness positron beam gains 100--150 MeV over 6 cm ($1.6$--$2.5$~GeV/m) with a 92\% capture rate.

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