Abstract

The nucleon pair shell model calculation is performed in terms of the SD collective pairs which are obtained in a suitable way to obtain the maximum collectivity. The method is applied to even-even Sn, Te, Xe, Ba, and Ce isotopes near the $A=130$ region employing the (monopole and quadrupole) pairing plus quadrupole-quadrupole-type interaction with a very few parameters. The structure of energy levels for the quasi-\ensuremath{\gamma} band as well as the ground band is well reproduced in each nucleus. Other properties such as $E2$ transition rates and binding energies also agree with experimental data very well. The overall fit with the experimental data is superior to the previous calculations.

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