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- W2094174566 abstract "The trinucleon charge form factors are studied for various nuclear interaction models with possible three-body force and meson-exchange-current effects included. A unitary transformation method of generating three-body forces is discussed. Various meson-exchange effects, including pair and recoil currents as well as that of the $ensuremath{pi}mathrm{NN}$ vertex function, are investigated. The calculations show that the strong potential dependence of the $^{3}mathrm{He}$ charge form factor in the impulse approximation diminishes considerably when meson-exchange effects are included. Exchange effects in $^{3}mathrm{H}$ are smaller than in $^{3}mathrm{He}$ and do not reduce the potential dependence. By including meson-exchange currents and three-body forces, good fits to the available $^{3}mathrm{He}$ and $^{3}mathrm{H}$ form factor data for $0.5 {mathrm{fm}}^{ensuremath{-}2}ensuremath{le}{q}^{2}ensuremath{le}12 {mathrm{fm}}^{ensuremath{-}2}$ are obtained without sacrificing a satisfactory triton binding energy. The position of the diffraction minimum is correctly predicted and the height of the second maximum is improved to about half of the experimental value.NUCLEAR STRUCTURE $^{3}mathrm{He}$, $^{3}mathrm{H}$; calculated charge form factors; pair and recoil exchange currents included; effect of $ensuremath{pi}mathrm{NN}$ vertex function; dependence on nuclear force; six two-body forces, two three-body forces." @default.
- W2094174566 created "2016-06-24" @default.
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- W2094174566 date "1977-01-01" @default.
- W2094174566 modified "2023-09-23" @default.
- W2094174566 title "Trinucleon charge form factor" @default.
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- W2094174566 doi "https://doi.org/10.1103/physrevc.15.404" @default.
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