Gamov-Teller transitions from 14N ground to 14C ground and excited states

Abstract

Gamov-Teller transitions from the 14N ground state to the 14C ground and excited states were investigated, based on the model of antisymmetrized molecular dynamics. The calculated strengths for the allowed transitions to the 0+, 1+, and 2+ states of 14C were compared with the experimental data measured by high-resolution charge-exchange reactions. The calculated GT transition to the 2+1 state is strong while those to the 0+2,3 and 2+2,3 states having dominant 2ω excited configurations are relatively weak. The present calculation can not describe the anonymously long life time of 14C, though the strength of the 14C ground state is somewhat suppressed because of the cluster (many-body) correlation in the ground states of 14C and 14N.

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