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- W2095262142 abstract "We have developed a three-dimensional electron-photon Monte Carlo transmission (MCT) code. The conversion-transmissivity coefficient of hot electron x-ray, ηct, is analysed theoretically and simulated numerically using the MCT code. Experiments of disc and cylindrical targets have been performed at the Shenguang-II laser facility. A multi-channel filter-fluorescence spectrometer was used to obtain the hard x-ray spectrum. The temperature and energy of hot electrons are induced from the hard x-ray spectrum and the ηct value. The average energy fraction of hot electrons is 14% of incident laser energy for the 1ωNd laser and the spherical target with an average temperature of hot electrons of 36 keV, while it is 15% for the 1ωNd laser and the cavity target with an average temperature of 54 keV. We have also obtained the results of 5.6% and 13.3 keV for the 3ωNd laser and the disc target, 4.9% and 17.9 keV for the 3ωNd laser and the half cavity target with a thin wall, and 2.1% and 22.4 keV for those with a thick wall. The experimental results agree with theory and simulation." @default.
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- W2095262142 date "2002-02-01" @default.
- W2095262142 modified "2023-09-26" @default.
- W2095262142 title "Fraction and Temperature of Hot Electrons Generated by Laser-Plasma Interaction at the Shenguang-II Laser Facility" @default.
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- W2095262142 doi "https://doi.org/10.1088/0256-307x/19/2/326" @default.
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