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- W2254598327 abstract "The need to develop suitable methods for describing the interactions and transport of high-energy, heavy charged particles through extended matter is important for a variety of applications including astronaut exposure to space radiations, spacecraft shielding, radiobiological studies, accelerator shield design, and clinical uses in cancer therapy. Crucial to satisfactorily to these calculations are accurate values for the absorption and fragmentation cross sections. Unfortunately, experimental data for these cross sections are sparse. Hence, the theoretical and semiempirical methods must be utilized to provide the necessary cross-section values and is illustrated here. Representative results for carbon-carbon collisions are listed. Presented are absorption cross sections at several energies and fragmentation cross sections at 2.1 GeV/nucleon. The cross sections include experimental results and predictions from parameterizations and quantum-mechanical models. For absorption cross sections, the energy-independent parameterization fails at low energies, whereas the optical model calculations and energy-dependent parameterization results are in good agreement with the experimental data. For the fragmentation, reasonable agreement is obtained for some isotopes; however, large disagreements exist for others." @default.
- W2254598327 created "2016-06-24" @default.
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- W2254598327 date "1986-01-01" @default.
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- W2254598327 title "Nuclear cross sections for heavy charged-particle transport" @default.
- W2254598327 hasPublicationYear "1986" @default.
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