Reexamination of fission fragment angular distributions and the fission process: Formalism
- 1 August 1985
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review C
- Vol. 32 (2) , 471-482
- https://doi.org/10.1103/physrevc.32.471
Abstract
The theory of fission fragment angular distributions is examined and the universally used expression is found to be valid only under restrictive assumptions. A more general angular distribution formula is derived and applied to recent data of high spin systems. At the same time it is shown that the strong anisotropies observed from such systems can be understood without changing the essential basis of standard fission theory. The effects of reaction mechanisms other than complete fusion on fission fragment angular distributions are discussed and possible angular distribution signatures of noncompound nucleus formation are mentioned.Keywords
This publication has 30 references indexed in Scilit:
- Comment on "Fission-Fragment Angular Distributions"Physical Review Letters, 1984
- New Evaluation of Fission-Fragment Angular Distributions in Heavy-Ion ReactionsPhysical Review Letters, 1984
- Energy dependence of fission fragment angular distributions for 19F, 24Mg and 28Si induced reactions on 208PbPhysics Letters B, 1983
- A reconsideration of fission fragment angular distributions from nuclei of high spinThe European Physical Journal A, 1983
- Reassessment of fission fragment angular distributions from continuum states in the context of transition-state theoryPhysics Reports, 1983
- Properties of fission induced by the complete capture ofbyatMeVPhysical Review C, 1983
- Angular distributions of fragments from fission induced by 220-MeVon targets of,, andPhysical Review C, 1983
- Experimental Signatures of Quasifission ReactionsPhysical Review Letters, 1983
- Observation of Anisotropy in the Fission Decay of Nuclei with Vanishing Fission BarrierPhysical Review Letters, 1981
- Equilibrium configurations of rotating charged or gravitating liquid masses with surface tension. IIAnnals of Physics, 1974