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Ion acceleration with an ultra-intense two-frequency laser tweezer

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arxiv 1707.07290 v2 pith:2KVW7B2G submitted 2017-07-23 physics.acc-ph

classification physics.acc-ph
keywords lasersultra-intenseconceptextremelyplasmaproducetweezeracceleration
verification ladder T0 review T1 audit T2 compute T3 formal
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Ultra-intense lasers produce and manipulate plasmas, allowing to locally generate extremely high static and electromagnetic fields. This Letter presents a concept of an ultra-intense optical tweezer, where two counter-propagating circularly polarized intense lasers of different frequencies collide on a nano-foil. Interfering inside the foil, lasers produce a beat wave, which traps and moves plasma electrons as a thin sheet with an optically controlled velocity. The electron displacement creates a plasma micro-capacitor with an extremely strong electrostatic field, that efficiently generates narrow-energy-spread ion beams from the multi-species targets, e.g. protons from the hydrocarbon foils. The proposed ion accelerator concept is explored theoretically and demonstrated numerically with the multi-dimensional particle-in-cell simulations.

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