Shape evolution of 96Zr and 96Mо with excitation energy increase

Authors

  • M. A. Mardyban Dubna State University, Dubna, Russian Federation
  • D. A. Sazonov Dubna State University, Dubna, Russian Federation
  • E. A. Kolganova Dubna State University, Dubna, Russian Federation
  • R. V. Jolos Dubna State University, Dubna, Russian Federation

Keywords:

kernel structure, collective hamiltonian, quadrupole deformation

Abstract

The observed properties of the low-lying collective excitations of 96Zr and 96Mo are investigated in the framework of the collective quadrupole nuclear model with the Bohr Hamiltonian, whose potential energy has two minima - spherical and deformed. Satisfactory description of the excitation energies and E2 transition probabilities is obtained. It is shown that in the case of 96Zr both minima are sufficiently deep. However, in the case of 96Mo a deformed minimum is only outlined.

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Published

2021-08-30

How to Cite

Мардыбан, М. А., Сазонов, Д. А., Колганова, Е. А., & Джолос, Р. В. (2021). Shape evolution of 96Zr and 96Mо with excitation energy increase. E-Journal of Dubna State University. A Series of “Science of Man and Society”, (2(43), 37–41. Retrieved from https://ein.uni-dubna.ru/index.php/ein/article/view/173

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