Abstract

The levels in{sup 108,110,112}Ru have been investigated in the spontaneous fission of {sup 252}Cf using {gamma}-{gamma}-{gamma}-, {gamma}-{gamma}-, x-x-, x-{gamma}-, and x-{gamma}-{gamma}-coincidence techniques. The levels up to 16{sup +} and 9{sup +} in the yrast bands and {gamma}-vibrational bands have been identified with very little energy staggering in {sup 108,110,112}Ru. The ground bands in {sup 108,110}Ru have identical {gamma}-ray transition energies up to 8{sup +}. These are the lightest observed even-even nuclei with extended identical ground bands. Calculations in a collective model which includes rotations and vibrations reproduce the level energies and {gamma} band branching ratios above the 3{sup +} state rather well, while rigid triaxial rotor model calculations reproduce the branching ratios for the 2{sup +} and 3{sup +} states.

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