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Veuillez utiliser cette adresse pour citer ce document : https://hdl.handle.net/20.500.12177/10898
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dc.contributor.advisorOwono Ateba, Pierre-
dc.contributor.advisorEle Abiama, Patrice-
dc.contributor.authorOmon, Yves-
dc.date.accessioned2023-07-19T11:07:31Z-
dc.date.available2023-07-19T11:07:31Z-
dc.date.issued2021-
dc.identifier.urihttps://hdl.handle.net/20.500.12177/10898-
dc.description.abstractIn this Thesis, we study Bohr Hamiltonian model describing the different nuclear interactions, motions and deformations that the atomic nucleus undergoes. This model is solved by relying on the Nikivorov-Uvarov method and using Kratzer screened potential to determine the energy of the spectrum and the wave function. We apply this model to the isotopes of 126,128,130,132,134Xe and 192,194,196Pt. Indeed, by using the technique of separating variables, we end up with two equations, one of which is a function of the parameter which represents the rotational motion and the equation of the vibrational motion which is a function of the parameter γ. In order to determine the energy and wave function of the system, the equation containing the β part is solved using the Nikivorov-Uvarov methodfr_FR
dc.format.extent136 p.fr_FR
dc.publisherUniversité de Yaoundé Ifr_FR
dc.subjectHamiltonien de Bohrfr_FR
dc.subjectPotentiel écranté de Kratzerfr_FR
dc.subjectMéthode de Nikiforov-Uvarovfr_FR
dc.subjectNoyaux triaxiauxfr_FR
dc.subjectProbabilité de transition B(E2)fr_FR
dc.titleEtude de la déformation des noyaux triaxiaux en utilisant le Hamiltonien de Bohrfr_FR
dc.typeThesis-
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