MCNP6 fragmentation of light nuclei at intermediate energies
arXiv:1404.7820 · doi:10.1016/j.nima.2014.07.016
Abstract
Fragmentation reactions induced on light target nuclei by protons and light nuclei of energies around 1 GeV/nucleon and below are studied with the latest Los Alamos Monte Carlo transport code MCNP6 and with its cascade-exciton model (CEM) and Los Alamos version of the quark-gluon string model (LAQGSM) event generators, version 03.03, used as stand-alone codes. Such reactions are involved in different applications, like cosmic-ray-induced single event upsets (SEU's), radiation protection, and cancer therapy with proton and ion beams, among others; therefore, it is important that MCNP6 simulates them as well as possible. CEM and LAQGSM assume that intermediate-energy fragmentation reactions on light nuclei occur generally in two stages. The first stage is the intranuclear cascade (INC), followed by the second, Fermi breakup disintegration of light excited residual nuclei produced after INC. Both CEM and LAQGSM account also for coalescence of light fragments (complex particles) up to He4 from energetic nucleons emitted during INC. We investigate the validity and performance of MCNP6, CEM, and LAQGSM in simulating fragmentation reactions at intermediate energies and discuss possible ways of further improving these codes.
31 pages, 27 figures, submitted to Nucl. Instrum. Methods A
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Cited by in corpus (4)
- Extension of the Liège Intranuclear-Cascade model to reactions induced by light nuclei
- Production of Energetic Light Fragments in CEM, LAQGSM, and MCNP6
- Running axial mass of the nucleon as a phenomenological tool for calculating QE neutrino-nucleus cross sections
- Production of Heavy Clusters with an Expanded Coalescence Model in CEM