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- W2052292532 abstract "The system of equations of motion for the components of the one-particle density matrix is linearized for a finite system of fermions interacting through a two-body “residual” force. Exchange terms are included. Equations corresponding to those of the “extended shell model” method are obtained for calculating collective states of spherical nuclei of definite angular momentum, parity, spin and isobaric spin, both in the j-j and L–S coupling scheme. Particular application and solution of such equations is obtained for the case of the giant dipole state of O16 by the use of finite range potentials with two different mixtures of exchange forces and radial shapes. The matrix elements are antisymmetrized and the “backward-going graphs” are included. Satisfactory agreement with experiment is obtained.The left over terms bilinear in the density operator are then “minimized” by extracting their lowest order linear contribution. The resulting correction terms are estimated for the giant dipole state in O16 and found small, giving support to the Random Phase Approximation." @default.
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- W2052292532 date "1961-11-01" @default.
- W2052292532 modified "2023-09-25" @default.
- W2052292532 title "Theory of collective excitations of spherical nuclei with particular application to the giant dipole state" @default.
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- W2052292532 doi "https://doi.org/10.1016/0029-5582(61)91051-3" @default.
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