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Laser-driven generation of collimated quasi-monoenergetic proton beam using double-layer target with modulated interface

机译:用调制接口使用双层目标激光驱动准直的准单元素质子束

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摘要

Usage of double-layer targets consisting of heavy and light material with modulated interface between them provides a way for laser-driven generation of collimated ion beams. With extensive 2D3V PIC simulations we show that this configuration may result in a development of a relativistic instability with Rayleigh-Taylor and Richtmyer-Meshkov like features. Initially small perturbations are amplified during the laser-target interaction leading to the formation of low-density plasma regions and high-density bunches between them, which are accelerated by the laser radiation pressure as whole compact structures. That results in collimated quasi-monoenergetic proton beam with high average energy. The properties of this proton beam such as its low emittance (one order of magnitude lower compared to that of conventional accelerators) and divergence are discussed. Results are compared with similar acceleration schemes such as double-layer target without corrugation and single-layer target.
机译:用调制接口组成的双层目标由它们之间的调制接口组成的双层目标提供了一种用于激光驱动的准直离子束的方法。 通过广泛的2D3V PIC模拟,我们表明,这种配置可能导致使用Rayleigh-Taylor和Richtmyer-Meshkov等相对论不稳定的发展。 最初在激光 - 目标相互作用期间放大初始扰动,导致它们之间的低密度等离子体区域的形成和高密度串联,其被激光辐射压力作为整个紧凑结构加速。 这导致具有高平均能量的准直的准单元素质子束。 讨论了这种质子束的特性,例如其低发射率(与传统加速器的相比,比较低一阶数)和发散。 将结果与类似加速方案(如没有波纹的双层靶)进行比较。

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