Journal
EUROPEAN PHYSICAL JOURNAL PLUS
Volume 136, Issue 1, Pages -Publisher
SPRINGER HEIDELBERG
DOI: 10.1140/epjp/s13360-020-00985-6
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Funding
- Ministry of Education and Science of Kazakhstan Republic [BR05236291]
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A new phenomenological model (FANSY 2.0 QGSJ) based on the traditional quark-gluon string model has been developed to simulate meson-proton interactions in a wide energy range. The model successfully reproduces low-energy accelerator data and shows a general agreement between simulated results and experimental data. The relationship between the quark composition of the most energetic hadrons and the leading effect is discussed.
Simulation of meson-proton interactions is considered in the framework of a new phenomenological model (FANSY 2.0 QGSJ) developed on the basis of the traditional quark-gluon string model to simulate hadron interactions in a wide energy range. The model reproduces low-energy accelerator data on the generation of pi 0 mesons, rho+,0, omega and f2 resonances, strange K0,+, K0, K20 and phi resonances, charmed D +/- ,0, Ds +/- and D0 mesons, p, p and Delta ++ baryons, Lambda and Lambda hyperons in pion-proton and kaon-proton interactions. The relationship between the quark composition of the most energetic hadrons and the leading effect is discussed. A general agreement between simulated results and experimental data is shown.
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