Published May 4, 1989
| Version v1
Journal article
Projectile breakup effect in elastic scattering of 9Be
Creators
- 1. Osaka City Univ. (Japan). Dept. of Physics
- 2. Hokkaido Univ., Sapporo (Japan). Center for Information Processing Education
- 3. Science and Engineering Research Council, Daresbury (UK). Daresbury Lab.
Description
The projectile breakup effect on the elastic scattering of 9Be has been studied by coupled-channel calculations based on the microscopic cluster-model functions for 9Be. It is found that the effect is quite significant and essential to reproduce the elastic scattering at Elab=158 MeV without introducing any renormalisation factor to the double-folding potential. The dynamical polarisation potential derived clearly shows the repulsive nature of the breakup effect. (orig.)
Additional details
Publishing Information
- Journal Title
- Physics Letters, (Section) B
- Journal Volume
- 221
- Journal Issue
- 3/4
- Series
- Phys. Lett., B.
- Journal Page Range
- 227-232
- ISSN
- 0370-2693
- CODEN
- PYLBA
INIS
- Country of Publication
- Netherlands
- Country of Input or Organization
- Netherlands
- INIS RN
- 20054874
- Subject category
- S73: NUCLEAR PHYSICS AND RADIATION PHYSICS;
- Resource subtype / Literary indicator
- Numerical Data
- Descriptors DEI
- ALUMINIUM 27; ALUMINIUM 27 TARGET; ANGULAR DISTRIBUTION; BERYLLIUM 9; BERYLLIUM 9 REACTIONS; BREAKUP REACTIONS; CALCIUM 40; CALCIUM 40 TARGET; CENTRAL POTENTIAL; CLUSTER MODEL; COUPLED CHANNEL THEORY; DIFFERENTIAL CROSS SECTIONS; ELASTIC SCATTERING; MEV RANGE 100-1000; NUCLEAR STRUCTURE; OXYGEN 16; OXYGEN 16 TARGET; SPIN ORIENTATION; THEORETICAL DATA; WAVE FUNCTIONS; WOODS-SAXON POTENTIAL
- Descriptors DEC
- ALUMINIUM ISOTOPES; BERYLLIUM ISOTOPES; CALCIUM ISOTOPES; CROSS SECTIONS; DATA; DISTRIBUTION; ENERGY RANGE; EVEN-EVEN NUCLEI; EVEN-ODD NUCLEI; FUNCTIONS; HEAVY ION REACTIONS; INFORMATION; ISOTOPES; LIGHT NUCLEI; MATHEMATICAL MODELS; MEV RANGE; NUCLEAR MODELS; NUCLEAR POTENTIAL; NUCLEAR REACTIONS; NUCLEI; NUMERICAL DATA; ODD-EVEN NUCLEI; ORIENTATION; OXYGEN ISOTOPES; POTENTIALS; SCATTERING; STABLE ISOTOPES; TARGETS