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A New Injection and Acceleration Scheme of Positrons in the Laser-Plasma Bubble Regime

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arxiv 1905.05096 v3 pith:LZT7UIIL submitted 2019-05-13 physics.plasm-ph

A New Injection and Acceleration Scheme of Positrons in the Laser-Plasma Bubble Regime

classification physics.plasm-ph
keywords positronsaccelerationbeambubbleforceinjectionlaserplasma
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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A novel approach for positron injection and acceleration in laser driven plasma wakefield is proposed. A theoretical model is developed and confirmed through PIC simulation. One ring-shaped beam and one co-axially propagating Gaussian beam drive wakefields in a preformed plasma volume filled with both electrons and positrons. The laser's ponderomotive force as well as the charge separation force in the front bucket of the first bubble are utilized to provide the transverse momenta of injected positrons and those positrons can be trapped by the focusing field and then accelerated by the wakefield. The simulation shows that a relatively high-charge, quasi-monoenergetic positron beams can be obtained.

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