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Acceleration of an electron bunch with a non-Gaussian transverse profile in a quasilinear plasma wakefield

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arxiv 2208.04585 v1 pith:2JQ46D6W submitted 2022-08-09 physics.acc-ph

classification physics.acc-ph
keywords beamtransversenon-gaussianplasmaprofilewakefieldwitnessacceleration
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Beam-driven plasma wakefield accelerators typically use the external injection scheme to ensure controllable beam quality at injection. However, the externally injected witness bunch may exhibit a non-Gaussian transverse density distribution. Using particle-in-cell simulations, we show that the common beam quality factors, such as the normalized RMS emittance and beam radius, do not strongly depend on the initial transverse shapes of the witness beam. Nonetheless, a beam with a highly-peaked transverse spatial profile can achieve a higher fraction of the total beam charge in the core. The same effect can be seen when the witness beam's transverse momentum profile has a peaked non-Gaussian distribution. In addition, we find that an initially non-axisymmetric beam becomes symmetric due to the interaction with the plasma wakefield, and so it does not cause a detrimental effect for the beam acceleration.

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