Reactions induced by 30 MeV 3He beam on 9Be : cluster transfer reactions

被引:1
作者
Urazbekov, B. A. [1 ,2 ,3 ]
Issatayev, T. [1 ,2 ,4 ]
Lukyanov, S. M. [4 ]
Azhibekov, A. [2 ,4 ,5 ]
Denikin, A. S. [4 ,6 ]
Mendibayev, K. [2 ,4 ]
Janseitov, D. M. [2 ,3 ,7 ]
Penionzhkevich, Yu E. [4 ]
Kuterbekov, K. A. [1 ]
Zholdybayev, T. K. [2 ,7 ]
机构
[1] Gumiliyev Eurasian Natl Univ, 2 Satpayev Str, Astana, Kazakhstan
[2] Inst Nucl Phys, 1 Ibragimov Str, Alma Ata, Kazakhstan
[3] JINR, Bogolubov Lab Theoret Phys, 20 Joliot Curie Str, Dubna, Russia
[4] JINR, Flerov Lab Nucl React, 20 Joliot Curie Str, Dubna, Russia
[5] Korkyt Ata State Univ, 29A Aiteke Byi Str, Kyzylorda, Kazakhstan
[6] Dubna State Univ, 19 Univ Skaya Str, Dubna, Russia
[7] Al Farabi Kazakh Natl Univ, Alma Ata, Kazakhstan
关键词
cluster transfer; reaction mechanisms; coupled equations; OPTICAL-MODEL POTENTIALS; ELASTIC-SCATTERING; 3-NUCLEON TRANSFER; LIGHT-NUCLEI; PROTON;
D O I
10.1088/1674-1137/ad0376
中图分类号
O57 [原子核物理学、高能物理学];
学科分类号
070202 ;
摘要
An experiment was conducted for studying the cluster structure of Be induced by He ions at an energy of 30 MeV. As results of the nuclear reaction He-3 + Be-9, the differential cross sections for the exit channels - elastic, inelastic, alpha + Be-8, He-6 + Be-6, Li-6 + Li-6, and Be-7 + He-5 - were measured. Elastic and inelastic scattering data were treated within both the optical model and coupled channel method. A new set of optical potentials was considered for the elastic scattering. The deformation parameter was established for the transition . Cluster transfer reactions were analyzed via the coupled reaction channel method. The nuclear reactions with the exit channels He-6 + Be-6, Li-6 + Li-6, and Be-7 + He-5 were complemented by two-step transfer mechanisms. The contribution of each reaction mechanism were shown and compared with the findings of other authors.
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页数:10
相关论文
共 27 条
[1]   ENERGY-LEVELS OF LIGHT-NUCLEI A = 5-10 [J].
AJZENBERGSELOVE, F .
NUCLEAR PHYSICS A, 1988, 490 (01) :1-225
[2]   Analysis of alpha elastically scattered by light nuclei applying different models [J].
Amar, A. .
INTERNATIONAL JOURNAL OF MODERN PHYSICS E, 2022, 31 (02)
[3]   Elastic scattering of light nuclei by deuterons with different models [J].
Amar, A. ;
Ibraheem, Awad A. .
INTERNATIONAL JOURNAL OF MODERN PHYSICS E, 2021, 30 (10)
[4]  
Becchetti Jr. F., 1971, PROCEEDINGS
[5]   GLOBAL OPTICAL-MODEL POTENTIALS FOR THE ELASTIC-SCATTERING OF LI-6,LI-7 PROJECTILES [J].
COOK, J .
NUCLEAR PHYSICS A, 1982, 388 (01) :153-172
[6]   Methods of calculating widths for decays to unbound states [J].
Fortune, H. T. .
NUCLEAR PHYSICS A, 2021, 1014
[7]   STRONG COUPLED-CHANNELS EFFECTS IN THE BE-9(ALPHA, T)B-10 REACTION [J].
HARAKEH, MN ;
VANPOPTA, J ;
SAHA, A ;
SIEMSSEN, RH .
NUCLEAR PHYSICS A, 1980, 344 (01) :15-40
[8]   Dipole excitation of 6Li and 9Be studied with an extended quantum molecular dynamics model [J].
Huang, Bo-Song ;
Ma, Yu-Gang .
PHYSICAL REVIEW C, 2021, 103 (05)
[9]   Investigation of the elastic and inelastic scattering of 3He from 9Be in the energy range 30-60 MeV [J].
Janseitov, D. M. ;
Lukyanov, S. M. ;
Mendibayev, K. ;
Penionzhkevich, Yu. E. ;
Skobelev, N. K. ;
Sobolev, Yu. G. ;
Kuterbekov, K. A. ;
Valiolda, D. S. ;
Zholdybayev, T. K. ;
Trzaska, W. H. ;
Khlebnikov, S. V. ;
Tyurin, G. P. ;
Urazbekov, B. A. ;
Harakeh, M. N. ;
Burjan, V. ;
Kroha, V. ;
Mrazek, J. ;
Piskor, S. ;
Sivacek, I. ;
Glagolev, V. .
INTERNATIONAL JOURNAL OF MODERN PHYSICS E, 2018, 27 (10)
[10]   Quadrupole deformation of 16C studied by proton and deuteron inelastic scattering [J].
Jiang, Y. ;
Lou, J. L. ;
Ye, Y. L. ;
Liu, Y. ;
Tan, Z. W. ;
Liu, W. ;
Yang, B. ;
Tao, L. C. ;
Ma, K. ;
Li, Z. H. ;
Li, Q. T. ;
Yang, X. F. ;
Xu, J. Y. ;
Yu, H. Z. ;
Han, J. X. ;
Bai, S. W. ;
Huang, S. W. ;
Li, G. ;
Wu, H. Y. ;
Zang, H. L. ;
Feng, J. ;
Chen, Z. Q. ;
Chen, Y. D. ;
Yuan, Q. ;
Li, J. G. ;
Hu, B. S. ;
Xu, F. R. ;
Wang, J. S. ;
Yang, Y. Y. ;
Ma, P. ;
Hu, Q. ;
Bai, Z. ;
Gao, Z. H. ;
Duan, F. F. ;
Hu, L. Y. ;
Tan, J. H. ;
Sun, S. Q. ;
Song, Y. S. ;
Ong, H. J. ;
Tran, D. T. ;
Pang, D. Y. ;
Yuan, C. X. .
PHYSICAL REVIEW C, 2020, 101 (02)