Configuration mixing effect in theC12(Li6,d)O*16α-transfer reaction
- 1 February 1980
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review C
- Vol. 21 (2) , 779-783
- https://doi.org/10.1103/physrevc.21.779
Abstract
Differential cross section of the -particle transfer to the five lowest lying states of the is calculated in the zero-range distorted-wave Born approximation. The use of microscopic form factors in which mixing of various p-h configurations is taken into account has a considerable effect on the calculated results and improves the fit to the experimental data compared with the case when a phenomenological form factor is used.
Keywords
This publication has 26 references indexed in Scilit:
- reaction in the 20-34 MeV incident energy rangePhysical Review C, 1978
- Location of 0+ 4p-2h and 6p-4h configurations in 42CaNuclear Physics A, 1978
- Four-nucleon transfer via the (6Li, d) reactionNuclear Physics A, 1977
- Alpha particle spectroscopic strengths for levels populated in the 20,21,22Ne(6Li, d)24,25,26Mg reactionsNuclear Physics A, 1977
- (6Li,d) spectroscopy in the f-p shellPhysics Letters B, 1975
- () reaction onPhysical Review C, 1974
- Four-nucleon transfer reactions among heavy ionsNuclear Physics A, 1973
- Alpha-Particle Transfer ReactionsAnnual Review of Nuclear Science, 1970
- Level Structure ofO17and theC13(Li6,d)andC13(Li7,t)ReactionsPhysical Review C, 1970
- 6Li induced reactions on 12C at Elab = 20 MeVNuclear Physics A, 1968