Abstract

The triple shape coexistence specific for the 0${}^{+}$ states and the evolution of the shape coexistence and mixing in the neutron-rich $N=58$ Sr and Zr isotopes are studied within the complex excited VAMPIR approach using a realistic effective interaction based on the Bonn A potential in a large model space. The influence of the shape mixing on the structure and dynamics of the positive-parity states up to spin 20${}^{+}$ in ${}^{96}$Sr and ${}^{98}$Zr is discussed and comparison to the available data is presented.

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