INVESTIGATION OF THE EMISSION OF LIGHT CHARGED PARTICLES IN REACTIONS INITIATED BY PROTONS WITH 30 MeV ENERGY AT 58Ni NUCLEUS
https://doi.org/10.52676/1729-7885-2019-1-91-95
Abstract
The work related to the study of the inclusive spectra of secondary protons produced in the interaction of protons with energies of 30.0 MeV with the nucleus 58Ni. Double-differential and integral cross sections of (p, xp) reaction have been received with further determination of their total partial cross sections. The analysis of the experimental spectra is based on a modified version of the exciton model of pre-equilibrium decay in the frame of code PRECO-2006. The contributions of compound, preequilibrium and direct mechanisms to the formation of the integral cross section are calculated. The experimental results can be used in developing new approaches in theory of nuclear reactions, as well as the design of safe and non-waste hybrid nuclear power plants.
About the Authors
T. K. ZholdybayevKazakhstan
Almaty
Zh. Mukan
Kazakhstan
Almaty
Astana
B. M. Sadykov
Kazakhstan
Almaty
M. Nassurlla
Kazakhstan
Almaty
B. A. Duysebayev
Kazakhstan
Almaty
N. O. Saduyev
Kazakhstan
Almaty
A. Zh. Duysenbayeva
Kazakhstan
Almaty
I. Zhumadilov
Kazakhstan
Almaty
N. Baybekova
Kazakhstan
Astana
References
1. Bertrad F.E. and Peelle R.W. Complete hydrogen and helium particle spectra from 30 to 60 MeV proton bombardment of nuclei with A= 12 to 129 and comparison with the intranuclear cascade model // Phys. Rev. – 1973. – N 3. – P. 1045–1064.
2. Риволь Ж.-П. Электроядерная установка для уничтожения ядерных отходов // УФН. – 2003. – Т. 173, Вып. 7. – С. 747– 755.
3. Герасимов A.С., Kиселев Г.В. Научно-технические проблемы создания электроядерных установок для трансмутации долгоживущих радиоактивных отходов и одновременного производства энергии (российский опыт) // ЭЧАЯ. – 2001. – Вып. 1, №32. – С. 143–188.
4. McGill W.F., Carlson R.F., Short T.H., Cameron J.M., Richardson J., Slaus I., van Oers W.T.H., Verba J.W., Margaziotis D.J., Doherty P. Measurements of the proton total reaction cross section for light nuclei between 20 and 48 MeV // Phys. Rev. – 1974. – Vol. C10, № 6. – P. 2237–2246.
5. Menet J.J.H., Gross E.E., Malanify J.J., Zucker A. Total-reaction-cross-section measurements for 30–60 MeV protons and imaginary optical potencial // Phys. Rev. – 1971. – Vol. C4, № 4. – P. 1114–1129.
6. Wilkins B.D., Igo G. 10-MeV Proton Reaction Cross Sections for Several Elements // Phys. Rev. – 1963. − Vol. 129. − Р. 2198– 2206.
7. Dicello J.F., Igo G.J., Roush M.L. Proton Total Reaction Cross Sections for 22 Isotopes of Ti, Fe, Ni, Cu, Zn, Zr, and Sn at 14.5 MeV // Phys.Rev. – 1967. − Vol.157. − Р.1001-1015.
8. Aрзуманов А.А., Неменов Л.М., Анисимов О.И. и др. Изохронный циклотрон с регулируемой энергией ионов // Изв. АН КазССР, сер. физ.-мат. – 1973. – № 4. – С.6-15.
9. Griffin J.J. Statistical model of intermediate structure // Phys.Rev. Lett. – 1966. – Vol. 17. – P. 478–481.
10. Kalbach C., PRECO-2006: Program for Calculating Pre-equilibrium and Direct Reaction Double Differential Cross-Sections // LA-10248-MS, February 2006.
11. Becchetti F. D., Greenlees G.W. Nucleon-nucleus optical-model parameters, A340, E<50 MeV // Phys. Rev.- 1969. – C 182. – P.1190–1209.
Review
For citations:
Zholdybayev T.K., Mukan Zh., Sadykov B.M., Nassurlla M., Duysebayev B.A., Saduyev N.O., Duysenbayeva A.Zh., Zhumadilov I., Baybekova N. INVESTIGATION OF THE EMISSION OF LIGHT CHARGED PARTICLES IN REACTIONS INITIATED BY PROTONS WITH 30 MeV ENERGY AT 58Ni NUCLEUS. NNC RK Bulletin. 2019;(1):91-95. (In Russ.) https://doi.org/10.52676/1729-7885-2019-1-91-95