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首页> 外文期刊>Plasma physics and controlled fusion >All-optical generation of petawatt gamma radiation via inverse Compton scattering from laser interaction with tube target
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All-optical generation of petawatt gamma radiation via inverse Compton scattering from laser interaction with tube target

机译:通过与管靶激光相互作用的反康顿散射通过反康顿散射全光产生Petawatt Gamma辐射

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摘要

A scheme for generating gamma photons from laser interaction with a hollow-tube target filled with near-critical-density plasma is investigated using quantum electrodynamics particle-in-cell simulation. The solid-density tube wall stabilizes the laser propagation in the tube, guides the laser-accelerated relativistic electrons, and its endplate reflects the laser light. As the electrons collide head-on with the reflected laser, a large number of MeV gamma photons are generated through inverse Compton scattering. It is found that bright gamma radiation with power up to 1.4 PW and 37% laser-to-gamma ray energy conversion efficiency can be obtained with 5 x 10(22) W cm(-2) laser pulse.
机译:使用量子电动粒子粒子仿真研究了与填充有近临界密度等离子体的中空管靶的激光相互作用的产生伽马光子的方案。 固体密度管壁稳定在管中的激光传播,引导激光加速的相对论电子,其端板反映激光。 当电子与反射激光器碰撞头部碰撞时,通过反康顿散射产生大量MEV伽马光子。 发现具有高达1.4 pW和37%激光至伽马射线能量转换效率的明亮伽马辐射可以用5×10(22)W cm(-2)激光脉冲获得。

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