A MICROSCOPIC CALCULATION OF THE COLLECTIVE SPECTRA OF THE NEUTRON CONFIGURATIONS (CLOSED SHELLS)50 (d5/2g7/2s1/2d3/2h1/2)12 BASED ON DYSON REPRESENTATION OF THE INTERACTING BOSON MODEL
- Received Date: 1900-01-01
- Accepted Date: 1900-01-01
- Available Online: 1983-12-05
Abstract: A microscopic calculation of the collective spectra of the neutron configurations (closed shells)50 (d5/2g7/2s1/2d3/2h11/12)12 is made based on the Dyson representation of the interacting boson model (IBM). The effective nucleon-nucleon interaction consists of a pairing force, a quadrupole pairing force and a quadrupole-quadrupole force. The wave functions of the three-dimensional isotropic harmonic oscillator are used for one-particle states, but the one-particle energies are chosen empirically by refering to the data of Cd110. For a rater wide region of the values of the effective interaction strength parameters calculations are performed to determine microscopically the s, d bosons and the IBM Hamiltonian and to diagonalize the IBM Hamiltonian thus obtained and to analyze the effects of the three parts of the effective nucleonnucleon interaction. We find that for appropriate values of the strength parameters of the effective interaction the calculated vibrational spectrum is in agreement with the experimental data of Cd110 and that by adjusting these parameter it is possible to reflect imitatively the transition from vibrational states to rotational ones.





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