Xiuguang Huang
Shanghai Jiao Tong University
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Publication
Featured researches published by Xiuguang Huang.
Scientific Reports | 2016
J. R. Zhao; Xing Zhang; Dawei Yuan; Y. T. Li; D. Z. Li; Y. J. Rhee; Ze Zhang; Fang Li; Baoqiang Zhu; Yan F. Li; Bo Han; Chang Liu; Yi-Tong Ma; Yi F. Li; M. Z. Tao; Menglong Li; Xin Guo; Xiuguang Huang; Sizu Fu; Jianqiang Zhu; G. Zhao; L. M. Chen; Changbo Fu; Jie Zhang
Neutron energy is directly correlated with the energy of the incident ions in experiments involving laser-driven nuclear reactions. Using high-energy incident ions reduces the energy concentration of the generated neutrons. A novel “laser-collider” method was used at the Shenguang II laser facility to produce monoenergetic neutrons via 7Li (d, n) nuclear reactions. The specially designed K-shaped target significantly increased the numbers of incident d and Li ions at the keV level. Ultimately, 13.3 MeV neutrons were obtained. Considering the time resolution of the neutron detector, we demonstrated that the produced neutrons were monoenergetic. Interferometry and a Multi hydro-dynamics simulation confirmed the monoenergetic nature of these neutrons.
Review of Scientific Instruments | 2015
J. R. Zhao; Xiaopeng Zhang; Dawei Yuan; L. M. Chen; Y. T. Li; Changbo Fu; Y. J. Rhee; Fang Li; Baoqiang Zhu; Yan. F. Li; Guoqian Liao; Kai Zhang; Bo Han; Chang Liu; Kai Huang; Y. Y. Ma; Yi. F. Li; J. Xiong; Xiuguang Huang; Sizu Fu; Jianqiang Zhu; G. Zhao; Jie Zhang
Neutron yields have direct correlation with the energy of incident deuterons in experiments of laser deuterated target interaction [Roth et al., Phys. Rev. Lett. 110, 044802 (2013) and Higginson et al., Phys. Plasmas 18, 100703 (2011)], while deuterated plasma density is also an important parameter. Experiments at the Shenguang II laser facility have produced neutrons with energy of 2.45 MeV using d (d, n) He reaction. Deuterated foil target and K-shaped target were employed to study the influence of plasma density on neutron yields. Neutron yield generated by K-shaped target (nearly 10(6)) was two times higher than by foil target because the K-shaped target results in higher density plasma. Interferometry and multi hydro-dynamics simulation confirmed the importance of plasma density for enhancement of neutron yields.
Chinese Physics B | 2017
Yanfei Li; Yutong Li; Dawei Yuan; Li Fang; Baojun Zhu; Zhe Zhang; J. Y. Zhong; Han Bo; Huigang Wei; Xiaoxing Pei; Jiarui Zhao; Chang Liu; Xiaoxia Yuan; Guoqian Liao; Yong-Joo Rhee; Xin Lu; Neng Hua; Baoqiang Zhu; Jianqiang Zhu; Zhiheng Fang; Xiuguang Huang; Sizu Fu; Zhao Gang; Jie Zhang
A bow shock is formed in the interaction of a high-speed laser-driven plasma cloud with a cylinder obstacle. Its temporal and spatial structures are observed by shadowgraphy and interferometry. The width of the shock transition region is ~ 50 μm, comparable to the ion–ion collision mean free path, which indicates that collision is dominated in the shock probably. The Mach-number of the ablating plasma cloud is ~ 15 at first, and decreases with time resulting in a changing shock structure. A two-dimension hydrodynamics code, USim, is used to simulate the interaction process. The simulated shocks can well reproduce the observed.
European Physical Journal D | 2015
Hua Shu; Xiuguang Huang; Junjian Ye; Jiang Wu; Guo Jia; Zhiheng Fang; Zhiyong Xie; Huazhen Zhou; Sizu Fu
European Physical Journal D | 2007
Hua Shu; Sizu Fu; Xiuguang Huang; M.-X. Ma; Jiang Wu; Junjian Ye; J.-H. He; Y. Gu
European Physical Journal-applied Physics | 2013
Hua Shu; Sizu Fu; Xiuguang Huang; Jia-Qin Dong; Zhiheng Fang; Tao Wang; Junjian Ye; Zhiyong Xie; Jia Guo; Huazhen Zhou
European Physical Journal D | 2012
Hua Shu; Sizu Fu; Xiuguang Huang; Zhiheng Fang; T. Wang; Junjian Ye; Zhiyong Xie; Huazhen Zhou; T. Long
European Physical Journal D | 2018
Zhiyu He; Guo Jia; Fan Zhang; Kui Luo; Xiuguang Huang; Hua Shu; Zhiheng Fang; Junjian Ye; Zhiyong Xie; Miao Xia; Sizu Fu
Bulletin of the American Physical Society | 2017
Hua Shu; Xiuguang Huang; Junjian Ye; Sizu Fu
Bulletin of the American Physical Society | 2013
Hua Shu; Sizu Fu; Xiuguang Huang