{sup 7,9,10}Be elastic scattering and total reaction cross sections on a {sup 12}C target
- Instituto de Fisica, Universidade de Sao Paulo, P.O. Box 66318, 05389-970 Sao Paulo, SP (Brazil)
- Instituto de Pesquisas Energeticas e Nucleares, IPEN-CNEN, Sao Paulo, SP (Brazil)
Elastic scattering angular distributions for {sup 7}Be, {sup 9}Be, and {sup 10}Be isotopes on {sup 12}C target were measured at laboratory energies of 18.8, 26.0, and 23.2 MeV, respectively. The analysis was performed in terms of optical model potentials using Woods-Saxon and double-folding form factors. Also, continuum discretized coupled-channels calculations were performed for {sup 7}Be and {sup 9}Be + {sup 12}C systems to infer the role of breakup in the elastic scattering. For the {sup 10}Be + {sup 12}C system, bound states coupled-channels calculations were considered. Moreover, total reaction cross sections were deduced from the elastic scattering analysis and compared with published data on other weakly and tightly bound projectiles elastically scattered on the {sup 12}C target, as a function of energy.
- OSTI ID:
- 21596762
- Journal Information:
- Physical Review. C, Nuclear Physics, Vol. 84, Issue 3; Other Information: DOI: 10.1103/PhysRevC.84.034611; (c) 2011 American Institute of Physics; Country of input: International Atomic Energy Agency (IAEA); ISSN 0556-2813
- Country of Publication:
- United States
- Language:
- English
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Related Subjects
ANGULAR DISTRIBUTION
BERYLLIUM 10
BERYLLIUM 7
BERYLLIUM 9
BOUND STATE
CARBON 12 TARGET
COUPLED CHANNEL THEORY
CROSS SECTIONS
ELASTIC SCATTERING
ENERGY DEPENDENCE
FORM FACTORS
MEV RANGE 10-100
OPTICAL MODELS
WOODS-SAXON POTENTIAL
ALKALINE EARTH ISOTOPES
BERYLLIUM ISOTOPES
BETA DECAY RADIOISOTOPES
BETA-MINUS DECAY RADIOISOTOPES
DAYS LIVING RADIOISOTOPES
DIMENSIONLESS NUMBERS
DISTRIBUTION
ELECTRON CAPTURE RADIOISOTOPES
ENERGY RANGE
EVEN-EVEN NUCLEI
EVEN-ODD NUCLEI
ISOTOPES
LIGHT NUCLEI
MATHEMATICAL MODELS
MEV RANGE
NUCLEAR POTENTIAL
NUCLEI
PARTICLE PROPERTIES
POTENTIALS
RADIOISOTOPES
SCATTERING
STABLE ISOTOPES
TARGETS
YEARS LIVING RADIOISOTOPES