The spreading width calculation of giant resonances with a semi-microscopic approach



Título del documento: The spreading width calculation of giant resonances with a semi-microscopic approach
Revista: Brazilian journal of physics
Base de datos: PERIÓDICA
Número de sistema: 000408758
ISSN: 0103-9733
Autores: 1
2
Instituciones: 1Universidade Federal do Vale do Sao Francisco, Colegiado de Engenharia Civil, Juazeiro, Bahia. Brasil
2Universidade Federal da Paraiba, Departamento de Fisica, Joao Pessoa, Paraiba. Brasil
Año:
Periodo: Dic
Volumen: 36
Número: 4A
Paginación: 1267-1274
País: Brasil
Idioma: Inglés
Tipo de documento: Artículo
Enfoque: Experimental, analítico
Resumen en inglés We have proposed a semi-microscopic approach to calculate the two particles - two holes (2p−2h) spreading width of giant resonances. Our proposal has been based in a hybrid method that implements the statistical multistep compound theory of Feshbach, Kerman and Koonin (FKK), widely and successful used in nuclear reactions mechanisms, in order to include relevant informations about the microscopic structure obtained by the Random Phase Approximation (RPA) calculations. This method is an approximative calculation to avoid the intrinsic numerical difficulties of those microscopic calculations that incorporate more complex structure than one particle - one hole (1p−1h) excitations. Unlike the reaction context, the residual interaction was adjusted in RPA calculation to reproduce the lowest energy levels of the studied nuclei. The feasibility and the efficiency of the approach has been tested in giant dipole resonances in 208Pb and neutron-rich calcium isotopes, 48Ca and 60Ca
Disciplinas: Física y astronomía
Palabras clave: Física,
Física de partículas y campos cuánticos,
Física nuclear
Keyword: Physics and astronomy,
Nuclear physics,
Particle physics and quantum fields,
Physics
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