Published November 1981 | Version v1
Journal article

Mechanism of the 14N(dp)15N reaction at the 16O nucleus excitation energy in the 22-23.5 MeV range

  • 1. Khar'kovskij Gosudarstvennyj Univ. (Ukrainian SSR)

Description

The parametrization of angular and energy dependences of vector analysing capacity of the 14N(dp)15N reaction together with differential cross section analogous data available is carried out. The results may be formulated in the following way. The 14N(dp)15N (cross sections and VAC) reaction data are satisfactorily described under the assumption of interference of five isolated resonances at deuteron energies 1.61, 1.97, 2.19, 2.44 and 2.93 MeV with a non resonance background calculated in the framework of the distorted wave Born approximation (DWBA). The corresponding energies of 16O nucleus excitation are equal 22, 15, 22, 46, 22, 65, 22, 87, 23, 3 MeV. Definite Isup(π) values equal to 1-, 3-, 2+, 1- and (2.3)-respectively may be ascribed to these resonances. Resides correlation of resonance positions in the observed proton groups at 30 and 150 deg angles there is a correlation of these resonances positions with peaks in 16O photonuclear reactions cross sections and capture reactions leading to the same compound system. It follows from the above analysis that the said resonances possess input state properties. This conclusion is confirmed by the investigation results on photonuclear reactions and proton capture reactions in which the nature of some of these resonances has been studied

Additional details

Additional titles

Original title (Russian)
Механизм реакции

Publishing Information

Journal Title
Izv. Akad. Nauk SSSR, Ser. Fiz.
Journal Volume
45
Journal Issue
11
Series
Izv. Akad. Nauk SSSR, Ser. Fiz.
Journal Page Range
2203-2210
ISSN
0367-6765

Conference

Title
31. All-union conference on nuclear spectrocopy and nuclear structure.
Dates
Apr 1981.
Place
Samarkand, USSR.

Optional Information

Notes
For English translation see the journal Bulletin of the Academy of Sciences of the USSR, Physical Series (USA).