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- W2000308404 abstract "The nonresonant component of radiative neutron capture reactions is parametrized at low energies by a polynomial of second degree. The potential model is first used to reproduce experimental data below 1 MeV with the help of spectroscopic factors. The fits are found sensitive to the scattering length of the initial $s$ or $p$ waves. The coefficients of a Taylor expansion are then calculated by resolution of the Schrodinger equation and its energy derivatives at energy zero. Such theory-guided parametrizations are derived for neutron capture by $^{7}mathrm{Li}$, $^{12}mathrm{C}$, $^{14}mathrm{C}$, $^{16}mathrm{O}$, and $^{18}mathrm{O}$. When the capture proceeds from the $s$ wave to a weakly bound state, a Pad'e-like parametrization better approximates the potential-model results." @default.
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- W2000308404 date "2009-09-18" @default.
- W2000308404 modified "2023-09-30" @default.
- W2000308404 title "Parametrization of low-energy cross sections for nonresonant neutron capture" @default.
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- W2000308404 doi "https://doi.org/10.1103/physrevc.80.034611" @default.
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