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Angular Momentum in Quantum Mechanics
Rotations in Quantum Mechanics
The Nuclear Shell Model
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angular momentum coupled angular momentum operator antisymmetric approximation average field basis becomes boson Brussaard Chap Clebsch-Gordan coefficients closed shell commutation configurations construct coordinates corresponding defined denoted density Derive described detail determined diagonal dipole discussed doubly-closed shell nuclei effective eigenstates eigenvalues eigenvectors energy eigenvalues evaluate even-even experimental expression Fermi fermion given Glaudemans 1977 ground-state Hamiltonian harmonic oscillator Hartree-Fock illustrate Interacting Boson model isospin linear low-lying magnetic method model space momenta motion multipole neutron notation nuclear shell model nuclei nucleon-nucleon nucleons obtained one-body orbitals pairing parameters particle particle-hole potential properties proton proton and neutron proton-neutron quadrupole quantum number quasi-particle relation representation residual interaction rotation schematic second quantization Sect secular equation self-consistent single-particle energies SkE2 SkE4 Skyrme spectra spectrum spherical tensor symmetry Talmi tensor operator three-body forces transformation transition two-body matrix elements two-particle valence nucleons vector Waroquier wave functions Wigner