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High-energy-density plasma in femtosecond-laser-irradiated nanowire-array targets for nuclear reactions
Pub type: Article
Citation: DefengKong_MARAE_v7_p
Status: Published
Journal: Matter and Radiation at Extremes
Volume: 7
Number: 6
Year: 2022
Month: Nov
Pages: 0120845
Publisher: {AIP} Publishing
URL: https://doi.org/10.1063%2F5.01...
DOI: doi.org/10.1063/5.0120845
Abstract: In this work, the high-energy-density plasmas (HEDP) evolved from joule-class-femtosecond-laser-irradiated nanowire-array (NWA) targets were numerically and experimentally studied. The results of particle-in-cell simulations indicate that ions accelerated in the sheath field around the surfaces of the nanowires are eventually confined in a plasma, contributing most to the high energy densities. The protons emitted from the front surfaces of the NWA targets provide rich information about the interactions that occur. We give the electron and ion energy densities for broad target parameter ranges. The ion energy densities from NWA targets were found to be an order of magnitude higher than those from planar targets, and the volume of the HEDP was several-fold greater. At optimal target parameters, 8% of the laser energy can be converted to confined protons, and this results in ion energy densities at the GJ/cm3 level. In the experiments, the measured energy of the emitted protons reached 4 MeV, and the changes in energy with the NWA’s parameters were found to fit the simulation results well. Experimental measurements of neutrons from 2 H(d,n)3 He fusion with a yield of (24 ± 18) × 106 /J from deuterated polyethylene NWA targets also confirmed these results.
Month_val: 11
Sig contrib: Aldo Bonasera
Authors: Kong, Defeng
Zhang, Guoqiang
Shou, Yinren
Xu, Shirui
Mei, Zhusong
Cao, Zhengxuan
Pan, Zhuo
Wang, Pengjie
Qi, Guijun
Lou, Yao
Ma, Zhiguo
Lan, Haoyang
Wang, Wenzhao
Li, Yunhui
Rubovic, Peter
Veselský, Martin
Bonasera, Aldo
Zhao, Jiarui
Geng, Yixing
Zhao, Yanying
Fu, Chang-Bo
Luo, Wen
Ma, Yu-Gang
Yan, Xueqing
Ma, Wenjun
Added by: [DGM]
Total mark: 0
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