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Dense blocks of energetic ions driven by multi-petawatt lasers

机译:多拍瓦激光驱动的高能离子密集块

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摘要

Laser-driven ion accelerators have the advantages of compact size, high density, and short bunch duration over conventional accelerators. Nevertheless, it is still challenging to simultaneously enhance the yield and quality of laser-driven ion beams for practical applications. Here we propose a scheme to address this challenge via the use of emerging multi-petawatt lasers and a density-modulated target. The density-modulated target permits its ions to be uniformly accelerated as a dense block by laser radiation pressure. In addition, the beam quality of the accelerated ions is remarkably improved by embedding the target in a thick enough substrate, which suppresses hot electron refluxing and thus alleviates plasma heating. Particle-in-cell simulations demonstrate that almost all ions in a solid-density plasma of a few microns can be uniformly accelerated to about 25% of the speed of light by a laser pulse at an intensity around 1022 W/cm2. The resulting dense block of energetic ions may drive fusion ignition and more generally create matter with unprecedented high energy density.
机译:与传统的加速器相比,激光驱动的离子加速器具有体积紧凑,密度高和束束持续时间短的优点。然而,在实际应用中同时提高激光驱动离子束的产量和质量仍然是挑战。在这里,我们提出一种方案,通过使用新兴的多PB激光器和密度调制靶来解决这一挑战。密度调制的靶允许其离子被激光辐射压力均匀地加速为致密块。另外,通过将靶材嵌入足够厚的基板中而显着改善了加速离子的束质量,这抑制了热电子回流并因此减轻了等离子体加热。单元中的粒子模拟表明,在密度为10 22 W / cm 2 。所产生的高能离子密集块可能会驱动聚变点火,并且更普遍地产生具有前所未有的高能量密度的物质。

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