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- W2019205722 abstract "Recently it has been suggested that as in the neutron deuteron problem the theoretically calculated spin-doublet S wave proton deuteron scattering length $^{2}mathrm{a}_{mathrm{pd}}$ is correlated with $^{3}mathrm{He}$ binding energy. This strongly suggests that $^{2}mathrm{a}_{mathrm{pd}mathrm{ensuremath{simeq}}0}$. In this paper we study various properties of the low energy trinucleon system including this correlation among scattering length and binding energy for the spin-doublet neutron deuteron and the proton deuteron systems in an ad hoc two-body model. The two-body potential models we employ have a long range tail of ${r}^{mathrm{ensuremath{-}}2}$ type and have been parametrized to produce the correct binding energies of $^{3}mathrm{H}$ and $^{3}mathrm{He}$ and the correct s wave spin-doublet neutron deuteron scattering lengths $^{2}mathrm{a}_{mathrm{nd}}$. The present study predicts the low energy nucleon deuteron phase shifts and predicts the proton deuteron scattering length to be $^{2}mathrm{a}_{mathrm{pd}mathrm{ensuremath{simeq}}(0.15ifmmodepmelsetextpmfi{}0.1}$) fm." @default.
- W2019205722 created "2016-06-24" @default.
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- W2019205722 creator A5052788173 @default.
- W2019205722 creator A5071615077 @default.
- W2019205722 date "1987-02-01" @default.
- W2019205722 modified "2023-09-23" @default.
- W2019205722 title "Trinucleon system in a two-body model: Coulomb effect on bound and scattering states" @default.
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- W2019205722 doi "https://doi.org/10.1103/physrevc.35.441" @default.
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