Ong J F, Zubarev A, Berceanu A C, Cuzminschi M, Tesileanu O
Extreme Light Infrastructure - Nuclear Physics (ELI-NP), Horia Hulubei National Institute for R &D in Physics and Nuclear Engineering (IFIN-HH), 30 Reactorului Street, 077125, Bucharest-Măgurele, Romania.
National Institute for Laser, Plasma and Radiation Physics, 077125, Bucharest-Măgurele, Romania.
Sci Rep. 2023 Nov 24;13(1):20699. doi: 10.1038/s41598-023-48090-9.
Nanowire array targets exhibit high optical absorption when interacting with short, intense laser pulses. This leads to an increased yield in the production of accelerated particles for a variety of applications. However, these interactions are sensitive to the laser prepulse and could be significantly affected. Here, we show that an array of aligned nanowires is imploded when irradiated by an Amplified Spontaneous Emission pedestal of a [Formula: see text] laser with an intensity on the order of [Formula: see text]. Using radiation hydrodynamics simulations, we demonstrate that the electron density profile is radially compressed at the tip by the rocket-like propulsion of the ablated plasma. The mass density compression increases up to [Formula: see text] when a more dense nanowire array is used. This is due to the ablation pressure from the neighboring nanowires. These findings offer valuable information for selecting an appropriate target design for experiments aimed at enhancing production of accelerated particles.
纳米线阵列靶在与短而强的激光脉冲相互作用时表现出高光学吸收。这导致在各种应用中加速粒子的产量增加。然而,这些相互作用对激光预脉冲敏感,可能会受到显著影响。在这里,我们表明,当用强度约为[公式:见原文]的[公式:见原文]激光的放大自发辐射基座照射时,排列的纳米线阵列会内爆。使用辐射流体动力学模拟,我们证明电子密度分布在尖端被烧蚀等离子体的火箭状推进径向压缩。当使用更密集的纳米线阵列时,质量密度压缩增加到[公式:见原文]。这是由于相邻纳米线的烧蚀压力。这些发现为旨在提高加速粒子产量的实验选择合适的靶设计提供了有价值的信息。