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The Intranuclear Cascade Model MCMC and its Applications for the Quasi-Deuteron Mechanism and Pion Photoproduction at Intermediate and High Energies

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Author(s):
Tulio Eduardo Rodrigues
Total Authors: 1
Document type: Doctoral Thesis
Press: São Paulo.
Institution: Universidade de São Paulo (USP). Instituto de Física (IF/SBI)
Defense date:
Examining board members:
Joao Dias de Toledo Arruda Neto; Tobias Frederico; Diógenes Galetti; Marcos Nogueira Martins; Fernando Silveira Navarra
Advisor: Joao Dias de Toledo Arruda Neto
Abstract

Photonuclear reactions and pion photoproduction at intermediate and high energies have been studied using the multicollisional intranuclear cascade model (MCMC) for the rapid reaction step and another Monte Carlo algorithm to describe the de-excitation of the compound nucleus via particle evaporation and nuclear fission. The new features of the MCMC are: i) the detailed inclusion of the quasideuteron channel in the range 20 < Eg < 140 MeV; ii) the development of a rigorous and completely new non stochastic Pauli blocking mechanism, taking into account particle - hole excitations during the pre-equilibrium stage; iii) the incorporation of an energetic criterion to stop de cascade; iv) the employment of an appropriate momentum distribution for light nuclei (Shell Model); v) the inclusion of pi^0 photoproduction channels in the Delta (1232) region and at high energies 4.0 < Eg < 6.0 GeV and forward angles, and vi) the new methodology to evaluate the pion-nucleus and Delta - nucleus Final State Interactions via a multiple scattering scenario. The quasideuteron mechanism reproduces the total photoabsorption cross sections and neutron multiplicities in heavy nuclei, giving a qualitative interpretation for the cross sections of the electrodisintegration channels (e,xnyp) from 232Th. The contribution of a possible few body photoabsorption process in 232Th is evaluated via fission channel. The calculations of the pi^0 angular distributions for incoherent production at intermediate energies for 12C and 208Pb are in excellent agreement with the experimental data of the Mainz Microtron (MAMI). The results of the pi^0 angular distributions at higher energies will be reference for the PrimEx Collaboration at the Jefferson Laboratory Facility, propitiating the separation of the incoherent part from the remaining nuclear and electromagnetic contributions and helping to perform a high precision measurement of the pi^0 to gamma-gamma radiactive decay width. (AU)