An empirical formula for scattered neutron components in fast neutron radiography

  • Scattering neutrons are one of the key factors that may affect the images of fast neutron radiography. In this paper, a mathematical model for scattered neutrons is developed on a cylinder sample, and an empirical formula for scattered neutrons is obtained. According to the results given by Monte Carlo methods, the parameters in the empirical formula are obtained with curve fitting, which confirms the logicality of the empirical formula. The curve-fitted parameters of common materials such as 6LiD are given.
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  • [1] Kinney H, Kim et al. Nuclear Instruments and Methods in Physics Research A, 1999, 422: 929-9322 Takenaka N et al. Nuclear Instruments and Methods in Physics Research A, 1999, 424: 73-763 Drell S et al. Science Based Stockpile Stewardship. National Technical Information Service. 1994, 1114 James Hall (PI) et al. High-Energy Neutron Imaging De-velopment at LLNL. FY06 Annual Report submitted for ESC project LL-24, United States, USDOE, 2006. 155 Koji Yoshii, Hisao Kobayashi. Nuclear Instruments and Methods in Physics Research A, 1996, 377: 76-796 Frank Dietrich et al. AIP Conf. Proc., 1997, 392: 837-8407 Rahmanian H et al. Nuclear Instruments and Methods in Physics Research Section A, 2002, 477: 378-3828 Matsubayashi Masahito, Hibiki Takashi et al. Nuclear In- struments and Methods in Physics Research A, 2004, 533: 481-490
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DOU Hai-Feng and TANG Bin. An empirical formula for scattered neutron components in fast neutron radiography[J]. Chinese Physics C, 2011, 35(5): 483-487. doi: 10.1088/1674-1137/35/5/016
DOU Hai-Feng and TANG Bin. An empirical formula for scattered neutron components in fast neutron radiography[J]. Chinese Physics C, 2011, 35(5): 483-487.  doi: 10.1088/1674-1137/35/5/016 shu
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Received: 2010-07-27
Revised: 2010-09-28
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An empirical formula for scattered neutron components in fast neutron radiography

Abstract: Scattering neutrons are one of the key factors that may affect the images of fast neutron radiography. In this paper, a mathematical model for scattered neutrons is developed on a cylinder sample, and an empirical formula for scattered neutrons is obtained. According to the results given by Monte Carlo methods, the parameters in the empirical formula are obtained with curve fitting, which confirms the logicality of the empirical formula. The curve-fitted parameters of common materials such as 6LiD are given.

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