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Self-modulation and anomalous collective scattering of laser produced intense ion beam in plasmas

机译:激光在等离子体中产生强离子束的自调制和异常集体散射

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The collective interaction between intense ion beams and plasmas is studied by simulations and experiments, where an intense proton beam produced by a short pulse laser is injected into a pre-ionized gas. It is found that, depending on its current density, collective effects can significantly alter the propagated ion beam and the stopping power. The quantitative agreement that is found between theories and experiments constitutes the first validation of the collective interaction theory. The effects in the interaction between intense ion beams and background gas plasmas are of importance for the design of laser fusion reactors as well as for beam physics.
机译:通过模拟和实验研究了强离子束与等离子体之间的集体相互作用,其中将由短脉冲激光产生的强质子束注入预电离的气体中。已经发现,取决于其电流密度,集体效应可以显着改变传播的离子束和阻止功率。理论与实验之间的定量一致性构成了集体相互作用理论的首次验证。强烈离子束与背景气体等离子体之间相互作用的影响对于激光聚变反应堆的设计以及束流物理学至关重要。

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