Abstract

The structure of $^{122}\mathrm{Cd}$ was studied through the decay of $^{122}\mathrm{Ag}$ by \ensuremath{\gamma}-\ensuremath{\gamma} coincidences, \ensuremath{\gamma}-ray angular correlations, and \ensuremath{\beta}-\ensuremath{\gamma}-\ensuremath{\gamma} fast electronic scintillation timing (FEST) measurements. The phonon and intruder structure of the ${0}^{+}$ states is discussed. The energy systematics of the low-lying levels in the Cd isotopes exhibits two distinct patterns, one minimizing at midshell, one somewhat later.

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