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Monte Carlo modeling of production of three alpha-particles in low energy n +12C interactions

Khusniddin K. OlimovLaboratory of High Energy Physics, Physical-Technical Institute of SPA “Physics-Sun” of Uzbek Academy of Sciences, Chingiz Aytmatov Street , 100084 Tashkent, UzbekistanV. V. LugovoiLaboratory of High Energy Physics, Physical-Technical Institute of SPA “Physics-Sun” of Uzbek Academy of Sciences, Chingiz Aytmatov Street , 100084 Tashkent, UzbekistanKosim OlimovLaboratory of High Energy Physics, Physical-Technical Institute of SPA “Physics-Sun” of Uzbek Academy of Sciences, Chingiz Aytmatov Street , 100084 Tashkent, UzbekistanMaratbek Z. ShodmonovLaboratory of High Energy Physics, Physical-Technical Institute of SPA “Physics-Sun” of Uzbek Academy of Sciences, Chingiz Aytmatov Street , 100084 Tashkent, UzbekistanK. G. GulamovLaboratory of High Energy Physics, Physical-Technical Institute of SPA “Physics-Sun” of Uzbek Academy of Sciences, Chingiz Aytmatov Street , 100084 Tashkent, UzbekistanRasuljon R. KattabekovLaboratory of High Energy Physics, Joint Institute for Nuclear Research, 141980 Dubna, RussiaP. I. ZarubinLaboratory of High Energy Physics, Joint Institute for Nuclear Research, 141980 Dubna, RussiaF. H. LiuInstitute of Theoretical Physics, Shanxi University, Taiyuan, Shanxi 030006, P. R. ChinaImran KhanUniversity of Science and Technology Bannu (USTB), Bannu, Pakistan
Modern Physics Letters Ajournal2021en
ABI

Аннотация

To describe [Formula: see text] interactions with production of three [Formula: see text]-particles at incident neutron kinetic energy of 14 MeV in a nuclear (photo) emulsion, a Monte Carlo model is proposed for four channels of decay of an excited carbon-12 nucleus into three [Formula: see text]-particles. The Monte Carlo calculation results describe well the experimental data on the distribution of the angle between the three-dimensional momenta of all pairs of [Formula: see text]-particles in a collision event, on the distribution of the angle between the projections of the momentum vectors of all pairs of [Formula: see text]-particles in collision event on each of the coordinate planes, on the distribution of the sum of the kinetic energies of all pairs of [Formula: see text]-particles in a collision event, and the distribution of projections of the momenta of [Formula: see text]-particles on the coordinate planes. The best agreement of the Monte Carlo model results with the experimental data is achieved if the direct decay [Formula: see text] and decay through the formation of an intermediate beryllium nucleus [Formula: see text] are generated with equal probabilities, while the excitation energies of 3.04 MeV, 1.04 MeV, and 0.1 MeV for the beryllium nucleus are generated with relative weights of 75%, 15%, and 10%, respectively.

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