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Manybody theory and the shell model
Harmonic oscillator wavefunctions
7 other sections not shown
algebra amplitude angular momentum coupling antisymmetrized attractive average interaction behavior beta decay binding energies calculations Cartesian center of mass chapter closed shell configuration mixing core excitation core polarization Coulomb deformed density diagonal effective mass eigenstates equation evaluate example expansion experimental expression Fermi force given graph Hamiltonian harmonic oscillator Hartree-Fock identical particle integral isospin magnetic major shell many-body matrix element mean square radius moments multipole neutron Nilsson normalization Nucl nuclear form factor nuclear structure nuclear surface nuclei nucleon nucleus number of particles obtained orbits oscillator functions overlap pair parity particle and hole particle-hole interaction particle-particle perturbation theory phase Phys physical potential prediction problem product wavefunction projectile proton quadrupole quantum numbers Racah recoupling relative coordinate representation repulsive residual nucleus rotation S-wave Schur's Lemma shell model single-particle energies single-particle wavefunctions Slater determinant spherical target tion transformation two-particle wavefunction valence particles vector coupling coefficient zero