Mashnik, Stepan Georgievich; Kerby, Leslie Marie
Los Alamos National Lab. (LANL), Los Alamos, NM (United States). Funding organisation: USDOE/LANL (United States)2015
Los Alamos National Lab. (LANL), Los Alamos, NM (United States). Funding organisation: USDOE/LANL (United States)2015
AbstractAbstract
[en] MCNP6, the latest and most advanced LANL Monte Carlo transport code, representing a merger of MCNP5 and MCNPX, is actually much more than the sum of those two computer codes; MCNP6 is available to the public via RSICC at Oak Ridge, TN, USA. In the present work, MCNP6 was validated and verified (V&V) against different experimental data on intermediate-energy fragmentation reactions, and results by several other codes, using mainly the latest modifications of the Cascade-Exciton Model (CEM) and of the Los Alamos version of the Quark-Gluon String Model (LAQGSM) event generators CEM03.03 and LAQGSM03.03. It was found that MCNP6 using CEM03.03 and LAQGSM03.03 describes well fragmentation reactions induced on light and medium target nuclei by protons and light nuclei of energies around 1 GeV/nucleon and below, and can serve as a reliable simulation tool for different applications, like cosmic-ray-induced single event upsets (SEU's), radiation protection, and cancer therapy with proton and ion beams, to name just a few. Future improvements of the predicting capabilities of MCNP6 for such reactions are possible, and are discussed in this work.
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22 May 2015; 23 p; NN2015: 12. International Conference on Nucleus-Nucleus Collisions; Catania (Italy); 21-26 Jun 2015; OSTIID--1182624; AC52-06NA25396; Available from http://permalink.lanl.gov/object/tr?what=info:lanl-repo/lareport/LA-UR-15-22811; PURL: http://www.osti.gov/servlets/purl/1182624/; This record replaces 47032379
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Mashnik, Stepan Georgievich; Kerby, Leslie Marie; Gudima, Konstantin K.
Los Alamos National Laboratory (LANL), Los Alamos, NM (United States). Funding organisation: USDOE (United States)
arXiv e-print [ PDF ]2017
Los Alamos National Laboratory (LANL), Los Alamos, NM (United States). Funding organisation: USDOE (United States)
arXiv e-print [ PDF ]2017
AbstractAbstract
[en] We extend the cascade-exciton model (CEM), and the Los Alamos version of the quark-gluon string model (LAQGSM), event generators of the Monte Carlo N-particle transport code version 6 (MCNP6), to describe production of energetic light fragments (LF) heavier than "4He from various nuclear reactions induced by particles and nuclei at energies up to about 1 TeV/nucleon. In these models, energetic LF can be produced via Fermi breakup, preequilibrium emission, and coalescence of cascade particles. Initially, we study several variations of the Fermi breakup model and choose the best option for these models. Then, we extend the modified exciton model (MEM) used by these codes to account for a possibility of multiple emission of up to 66 types of particles and LF (up to "2"8Mg) at the preequilibrium stage of reactions. Then, we expand the coalescence model to allow coalescence of LF from nucleons emitted at the intranuclear cascade stage of reactions and from lighter clusters, up to fragments with mass numbers A ≤ 7, in the case of CEM, and A ≤ 12, in the case of LAQGSM. Next, we modify MCNP6 to allow calculating and outputting spectra of LF and heavier products with arbitrary mass and charge numbers. The improved version of CEM is implemented into MCNP6. Lastly, we test the improved versions of CEM, LAQGSM, and MCNP6 on a variety of measured nuclear reactions. The modified codes give an improved description of energetic LF from particle- and nucleus-induced reactions; showing a good agreement with a variety of available experimental data. They have an improved predictive power compared to the previous versions and can be used as reliable tools in simulating applications involving such types of reactions.
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LA-UR--16-24713; OSTIID--1351984; AC52-06NA25396; Available from http://www.osti.gov/pages/biblio/1351984; DOE Accepted Manuscript full text, or the publishers Best Available Version will be available free of charge after the embargo period
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Journal Article
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Numerical Data
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Physical Review C; ISSN 2469-9985; ; v. 95(3); vp
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CALCULATION METHODS, COMPOSITE MODELS, DATA, ENERGY RANGE, ENERGY-LEVEL TRANSITIONS, EVEN-EVEN NUCLEI, EXTENDED PARTICLE MODEL, HELIUM ISOTOPES, INFORMATION, INTERACTIONS, ISOTOPES, LIGHT NUCLEI, MATHEMATICAL MODELS, NUCLEAR MODELS, NUCLEI, NUMERICAL DATA, PARTICLE INTERACTIONS, PARTICLE MODELS, QUARK MODEL, STABLE ISOTOPES, TEV RANGE
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Abramov, B. M.; Alekseev, P. N.; Borodin, Yu. A.; Bulychjov, S. A.; Dukhovskoy, I. A.; Krutenkova, A. P.; Martemianov, M. A.; Matsyuk, M. A.; Turdakina, E. N.; Khanov, A. I.; Mashnik, Stepan Georgievich
Los Alamos National Lab. (LANL), Los Alamos, NM (United States). Funding organisation: USDOE (United States)2015
Los Alamos National Lab. (LANL), Los Alamos, NM (United States). Funding organisation: USDOE (United States)2015
AbstractAbstract
[en] Momentum spectra of hydrogen isotopes have been measured at 3.5° from "1"2C fragmentation on a Be target. Momentum spectra cover both the region of fragmentation maximum and the cumulative region. Differential cross sections span five orders of magnitude. The data are compared to predictions of four Monte Carlo codes: QMD, LAQGSM, BC, and INCL++. There are large differences between the data and predictions of some models in the high momentum region. The INCL++ code gives the best and almost perfect description of the data.
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3 Feb 2015; 10 p; 22. International Baldin Seminar on High Energy Physics Problems; Dubna (Russian Federation); 15-20 Sep 2014; OSTIID--1169682; AC52-06NA25396; Available from http://permalink.lanl.gov/object/tr?what=info:lanl-repo/lareport/LA-UR-15-20768; PURL: http://www.osti.gov/servlets/purl/1169682/; Proceedings of Science
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