High Power Laser and Particle Beams, Volume. 34, Issue 8, 086002(2022)
Monte Carlo simulation of neutron capture γ-rays from nitrogen in the atmosphere
[1] [1] Glasstone S, Dolan P J. The effects of nuclear weapons[M]. Washington: U. S. Department of Defense, 1977.
[2] [2] Qiao Dengjiang. Introduction to the physics of nuclear explosion[M]. Beijing: National Defense Industry Press, 2003
[3] [3] Wang Jianguo, Niu Shengli, Zhang Dianhui, et al. Parameter hbook of high altitude nuclear detonation effect[M]. Beijing: Atomic Energy Press, 2010
[4] Liu Xiaohong, Wang Weili, Meng Tao, . Research on 3D spatial data models for early nuclear radiation damage effects and slitting algorithm[J]. Fire Control & Command Control, 37, 190-192,197(2012).
[5] [5] Wang Taichun, He Yunhan, Wang Yuzhi. Introduction to electromagic pulse[M]. Beijing: National Defense Industry Press, 2011
[6] [6] Guo Lisheng, Lu Huayu. Antigenic medicine[M]. Beijing: Atomic Energy Press, 2006
[7] Wang Ruihong, Ji Zhicheng, Pei Lucheng. Adaptive sampling method in deep-penetration particle transport problem[J]. High Power Laser and Particle Beams, 24, 2941-2945(2012).
[8] Zheng Zheng, Mei Qiliang, Deng Li. Global variance reduction method applied to HBR-2 benchmark[J]. Atomic Energy Science and Technology, 52, 987-993(2018).
[9] Shen Jingwen, Hu Ye, Zheng Yu, . Three-dimensional Monte Carlo transport code JMCT in shielding engineering application[J]. High Power Laser and Particle Beams, 30, 046002(2018).
[10] [10] Booth T E. MCNP variance reduction examples[R]. LAUR1225907, 2012.
[11] Shi Tao, Ma Jimin, Qiu Youheng, . Global variance reduction based on forward Monte Carlo calculation[J]. High Power Laser and Particle Beams, 30, 016006(2018).
[12] Zheng Zheng, Ding Qianxue, Zhou Yan. Variance reduction method based on adjoint discrete ordinate[J]. High Power Laser and Particle Beams, 30, 026004(2018).
[13] [13] Culbertson C N, Hendricks J S. An assessment of the MCNP4C weight window[R]. LA13668, 1999.
[14] Zuo Yinghong, Niu Shengli, Shang Peng, . Weight window variance reduction method for simulating long distance γ-ray transport[J]. Modern Applied Physics, 11, 010205(2020).
[15] Liu Li, Zuo Yinghong, Niu Shengli, . A varaince reduction method for simulating the long-distance transport of neutrons and secondary γ in high-altitude atmosphere by Monte Carlo method[J]. Modern Applied Physics, 13, 010202(2022).
Get Citation
Copy Citation Text
Li Liu, Yinghong Zuo, Shengli Niu, Jinhui Zhu, Xiazhi Li. Monte Carlo simulation of neutron capture γ-rays from nitrogen in the atmosphere[J]. High Power Laser and Particle Beams, 2022, 34(8): 086002
Category: Nuclear Science and Engineering
Received: Feb. 25, 2022
Accepted: Apr. 28, 2022
Published Online: Aug. 8, 2022
The Author Email: