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- W1966005890 abstract "We use a large-scale $6ensuremath{Elzxh}ensuremath{Omega}$ calculation for ${}^{6}$Li with microscopically derived two-body interaction to construct the $0ensuremath{Elzxh}ensuremath{Omega}$ $0p$ shell effective Hamiltonian, electric quadrupole, and magnetic dipole operators. While the E2 and M1 $6ensuremath{Elzxh}ensuremath{Omega}$ operators are one-body operators with free nucleon charges, the effective operators are two-body operators with substantially different renormalization for the isoscalar and isovector matrix elements, especially for the E2 operator. We show that these operators can be very well approximated by one-body operators provided that effective proton and neutron charges are used. The obtained effective charges are compatible with those used in phenomenological shell-model studies. The two-body part of the effective operators is estimated." @default.
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- W1966005890 date "1997-02-01" @default.
- W1966005890 modified "2023-09-27" @default.
- W1966005890 title "Microscopic origins of effective charges in the shell model" @default.
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- W1966005890 doi "https://doi.org/10.1103/physrevc.55.r573" @default.
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