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Contents 1
Algorithm for computational age dating of nuclear material for nuclear forensic purposes / Jaechan Park ; Jungho Song ; Minsu Ju ; Jinyoung Chung ; Taehoon Jeon ; Changwoo Kang ; Seung Min Woo 1
[요약] 1
1. Introduction 2
2. Methodology and Result 2
2.1. Radioactive Equilibrium Relationships of Nuclear Materials and Radio-Chronometry 2
2.2. Mathematical Models for Radio-Chronometry 3
2.3. Decay Chain Radioactivity Calculation Method 5
2.4. Radio-Chronometry Algorithm and Influencing Factors 7
2.5. Comparison of Radio-Chronometry Algorithms 9
3. Conclusion 11
REFERENCES 12
번호 | 참고문헌 | 국회도서관 소장유무 |
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1 | B. Briyatmoko. Identification of High Confidence Nuclear Forensics Signatures for Mining, Milling and Conversion Process, International Atomic Energy Agency Report, IAEA-TECDOC-1820 (2017). | 미소장 |
2 | International Atomic Energy Agency. Application of Nuclear Forensics in Combating Illicit Trafficking of Nuclear and Other Radioactive Material, IAEA Report, IAEA-TECDOC-1730 (2014). | 미소장 |
3 | H. Bateman, “Solution of a System of Differential Equations Occurring in the Theory of Radioactive Transformations”, in: Proceeding of the Cambridge Philosophical Society: Mathematical and Physical Science, 15, 423-427, Cambridge Philosophical Society, Cambridge (1910). | 미소장 |
4 | J. Cetnar, P. Stanisz, and M. Oettingen, “Linear Chain Method for Numerical Modelling of Burnup Systems”, Energies, 14(6), 1520 (2021). | 미소장 |
5 | A.F. Pacheco and L. Moral, “Algebraic Approach to the Radioactive Decay Equations”, Am. J. Phys., 71, 684(2003). | 미소장 |
6 | E. Levy, “Decay Chain Differential Equations: Solutions Through Matrix Analysis”, Comput. Phys. Commun., 234, 188-194 (2019). | 미소장 |
7 | A. E. Isotalo and P.A. Aarnio, “Comparison of Depletion Algorithms for Large Systems of Nuclides”, Ann. Nucl. Energy, 38(2-3), 261-268 (2011). | 미소장 |
8 | A.G. Croff, “ORIGEN2: A Versatile Computer Code for Calculating the Nuclide Compositions and Characteristics of Nuclear Materials”, Nucl. Technol., 62(3), 335-352 (1983). | 미소장 |
9 | M. Pusa and J. Leppanen, “Computing the Matrix Exponential in Burnup Calculations”, Nucl. Sci. Eng., 164(2), 140-150 (2010). | 미소장 |
10 | M.J. Kristo, A.M. Gaffney, N. Marks, K. Knight, W.S. Cassata, and Ian D. Hutcheon, “Nuclear Forensic Science:Analysis of Nuclear Material Out of Regulatory Control”, Annu. Rev. Earth Planet. Sci., 44, 555-579(2016). | 미소장 |
11 | R.W. Williams, A.M. Gaffney, and M.J. Kristo. Radiochronometry Guidance, Lawrence Livermore National Laboratory Technical Report, LLNL-TR-701379(2016). | 미소장 |
12 | International Technical Working Group, ITWG Guideline on Age Dating (Production Date Determination), ITWG-INFL-APDP-v1 (2016). | 미소장 |
13 | A.L. Fauré and T. Dalger, “Age Dating of Individual Micrometer-Sized Uranium Particles by Secondary Ion Mass Spectrometry: An Additional Fingerprint for Nuclear Safeguards Purposes”, Anal. Chem., 89(12), 6663-6669 (2017). | 미소장 |
14 | T.M. Kayzar, and R.W. Williams, “Developing 226Ra and 227Ac Age-Dating Techniques for Nuclear Forensics to Gain Insight From Concordant and Nonconcordant Radiochronometers”, J. Radioanal. Nucl. Chem., 307(3), 2061-2068 (2016). | 미소장 |
15 | Z. Varga, C. Venchiarutti, A. Nicholl, J. Krajkó, R. Jakopič, K. Mayer, S. Richter, and Y. Aregbe, “IRMM-1000a and IRMM-1000b Uranium Reference Materials Certified for the Production Date. Part I: Methodology, Preparation and Target Characteristics”, J. Radioanal. Nucl. Chem., 307(2), 1077-1085 (2016). | 미소장 |
16 | Z. Varga, A. Nicholl, J. Zsigrai, M. Wallenius, and K. Mayer, “Methodology for the Preparation and Validation of Plutonium Age Dating Materials”, Anal. Chem., 90(6), 4019-4024 (2018). | 미소장 |
17 | A.M. Gaffney, J.B.N. Wimpenny, T. Parsons-Davis, R.W. Williams, R.A. Torrese, and B.W. Chung, “A Case Study in Plutonium Radiochronometry Using Multiple Isotope Systems”, J. Radioanal. Nucl. Chem., 318(1), 287-295 (2018). | 미소장 |
18 | MathWorks. 2021. “Explanation of Funm (Evaluate General Matrix Function) Function.” MathWorks. Accessed Nov. 8 2021. Available from: https://kr. mathworks.com/help/matlab/ref/funm. | 미소장 |
19 | MathWorks. 2021. “Explanation of Vpasolve (Solve Equations Numerically) Function.” MathWorks. Accessed Nov. 8 2021. Available from: https://kr.mathworks. com/help/symbolic/sym.vpasolve. | 미소장 |
20 | A. Morgenstern, C. Apostolidis, and K. Mayer, “Age Determination of Highly Enriched Uranium: Separation and Analysis of 231Pa”, Anal. Chem., 74(21), 5513-5516 (2002). | 미소장 |
21 | Korea Laboratory Accreditation Scheme, Guidelines for Estimating and Expressing Uncertainty in Measurement Results, KOLAS-G-002 (2020). | 미소장 |
22 | Oak Ridge National Laboratory. Bateman Equation Adaptation for Solving and Integrating Peak Activity Into EPA ELCR and Dose Models, ORNL Report, ORNL/TM-2020/1780 (2020). | 미소장 |
23 | World Information Service on Energy Uranium Project. December 14 2020. “Universal Decay Calculator.”WISE Uranium Project. Accessed Nov. 15 2021. Available from: https://www.wise-uranium.org/rcc.html. | 미소장 |
24 | A.M. Gaffney, A. Hubert, W.S. Kinman, M. Magara, A. Okubo, F. Pointurier, K.C. Schorzman, R.E. Steiner, and R.W. Williams, “Round-Robin 230Th–234U Age Dating of Bulk Uranium for Nuclear Forensics”, J. Radioanal. Nucl. Chem., 307, 2055-2060 (2016). | 미소장 |
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