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- W2092135955 abstract "We study the correlation among $s$-wave low-energy four-nucleon observables by using a simplified dispersion theoretic ($frac{N}{D}$) approach. We find that the triton binding energy, its asymptotic normalization parameter, the deuteron exchange left-hand cut, and the nucleon-trinucleon ($Nensuremath{-}t$) scattering length control the low-energy $Nensuremath{-}t$ system. The isospin one channel is insensitive to the asymptotic normalization parameter of the triton. The effective range function $kcotensuremath{delta}$ for the isospin zero spin singlet $Nensuremath{-}t$ system has a pole whose position and residue are strongly correlated with the $Nensuremath{-}t$ scattering length. In this case the four-nucleon system (in our model) has an excited state whose binding energy and asymptotic normalization parameter are also correlated with the $Nensuremath{-}t$ scattering length.[NUCLEAR REACTIONS $s$-wave nucleon-trinucleon systems, spin-isospin channels, $frac{N}{D}$ approach, low-energy correlations.]" @default.
- W2092135955 created "2016-06-24" @default.
- W2092135955 creator A5071615077 @default.
- W2092135955 date "1981-07-01" @default.
- W2092135955 modified "2023-09-26" @default.
- W2092135955 title "Correlation among low-energy four-nucleon observables" @default.
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- W2092135955 doi "https://doi.org/10.1103/physrevc.24.16" @default.
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