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- W2012165958 abstract "A possible excitation scheme of particle-hole states in $Nensuremath{ne}Z$ nuclei is worked out within the isospin formalism. Particle-hole states with a definite isospin are decomposed into 1p-1h (particle-hole), 2p-2h, and 3p-3h states. This decomposition enables us to relate transition strengths from the ground state to the excited states and those in the adjacent nuclei. The same thing is done for $ensuremath{Delta}$ isobar-hole states. Using these results, we obtain the relations among the quenching strengths of magnetic transitions in $Nensuremath{ne}Z$ nuclei. In particular, we apply these relations to the $M1$ states around $^{48}mathrm{Ca}$ and $^{90}mathrm{Zr}$ and compare the results with experimental data obtained by ($p, n$), ($p, {p}^{ensuremath{'}}$), and ($e, {e}^{ensuremath{'}}$) experiments on $^{48}mathrm{Ca}$ and $^{90}mathrm{Zr}$.NUCLEAR STRUCTURE Isospins, $ensuremath{Delta}$ isobar polarization." @default.
- W2012165958 created "2016-06-24" @default.
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- W2012165958 date "1982-09-01" @default.
- W2012165958 modified "2023-09-26" @default.
- W2012165958 title "Relations among the quenching strengths of magnetic transitions due to theΔisobar excitation inN≠Znuclei" @default.
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- W2012165958 doi "https://doi.org/10.1103/physrevc.26.1256" @default.
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