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- W1814154443 abstract "In this work we evaluate the imaginary part of the isobar ensuremath{Delta} self-energy ${mathrm{ensuremath{Sigma}}}_{mathrm{ensuremath{Delta}}}$ from the two-body absorption process ensuremath{Delta}+Nensuremath{rightarrow}2N. This contribution is calculated using a recently developed nonrelativistic scheme, which allows for an evaluation of the self-energy with a basis of single-particle states appropriate for both bound hole states and for particle states in the continuum. In order to test the medium dependence of the self-energy, we calculate the two-body absorption term ${mathrm{ensuremath{Sigma}}}_{mathrm{ensuremath{Delta}}}^{mathit{A}2}$ for several finite nuclei with N=Z, i.e., $^{16}mathrm{O}$, $^{40}mathrm{Ca}$, and $^{100}mathrm{Sn}$. The resulting self-energy, which is energy dependent and nonlocal, is compared with a simple parametrization derived from nuclear matter." @default.
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- W1814154443 date "1994-07-01" @default.
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- W1814154443 title "Width of the Δ resonance in nuclei" @default.
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- W1814154443 doi "https://doi.org/10.1103/physrevc.50.501" @default.
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