Low-energy ${}^{12}$C continuum states in three-$\alpha$ model
Low-energy ${}^{12}$C continuum states in three-$\alpha$ model
The electric multipole strength distributions for transitions from the ${}^{12}\mathrm{C}(0_1^+)$ ground state to $3\alpha$ ($0^+$, $1^-$, $2^+$, and $3^-$) continuum states are studied in terms of $3\alpha$ model. Several sets of the $3\alpha$ Hamiltonian are introduced phenomenologically with conventional $\alpha$-$\alpha$ interaction potentials and $3\alpha$ potentials with different range parameters. The transition strength distributions are obtained from wave functions of $3\alpha$ bound- and continuum states calculated by the Faddeev three-body formalism. From these strength distributions, the resonance parameters (energy, $3\alpha$-decay width, and transition strength) of $3\alpha$ resonance states are extracted. Dependencies of these observables on interaction potential models are studied to examine the introduced interaction models. Using the transition strength distributions, excitation-energy spectra in the ${}^{12}\mathrm{C}(\alpha,\alpha^\prime)3\alpha$ reaction are calculated to compare with experimental data.
Souichi Ishikawa
原子能技术基础理论
Souichi Ishikawa.Low-energy ${}^{12}$C continuum states in three-$\alpha$ model[EB/OL].(2025-05-20)[2025-06-21].https://arxiv.org/abs/2505.14981.点此复制
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