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- W2013112022 endingPage "1399" @default.
- W2013112022 startingPage "1391" @default.
- W2013112022 abstract "The energies and widths of resonance states are determined by the analytic continuation of bound-state energies as functions of a potential strength parameter (``the coupling constant''). Various numerical examples show the applicability of the method to systems decaying to two- and three-body channels. The examples include unbound states of the nuclei ${}^{5}mathrm{He},$ ${}^{5}mathrm{Li},$ ${}^{9}mathrm{Be},$ and ${}^{9}mathrm{B},$ described in $ensuremath{alpha}+N$ and $ensuremath{alpha}+ensuremath{alpha}+N$ microscopic cluster models. Some states considered are controversial. Here they are well defined, and their questionable features are understood to arise from their proximity to the complex-energy region of unphysical resonances with negative energies and positive widths." @default.
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- W2013112022 date "1999-03-01" @default.
- W2013112022 modified "2023-09-23" @default.
- W2013112022 title "Unbound states by analytic continuation in the coupling constant" @default.
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- W2013112022 doi "https://doi.org/10.1103/physrevc.59.1391" @default.
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