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Amplitude enhancement of the self-modulated plasma wakefields

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arxiv 1805.03272 v1 pith:VXPJENIP submitted 2018-05-08 physics.acc-ph physics.plasm-ph

classification physics.acc-phphysics.plasm-ph
keywords plasmawakefieldsamplitudedensityphaseprotonsself-modulationwakefield
verification ladder T0 review T1 audit T2 compute T3 formal
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Seeded Self-modulation (SSM) has been demonstrated to transform a long proton bunch into many equidistant micro-bunches (e.g., the AWAKE case), which then resonantly excite strong wakefields. However, the wakefields in a uniform plasma suffer from a quick amplitude drop after reaching the peak. This is caused by a significant decrease of the wake phase velocity during self-modulation. A large number of protons slip out of focusing and decelerating regions and get lost, and thus cannot contribute to the wakefield growth. Previously suggested solutions incorporate a sharp or a linear plasma longitudinal density increase which can compensate the backward phase shift and therefore enhance the wakefields. In this paper, we propose a new plasma density profile, which can further boost the wakefield amplitude by 30%. More importantly, almost 24% of protons initially located along one plasma period survive in a micro-bunch after modulation. The underlying physics is discussed.

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