## Proceedings of the International School of Physics "Enrico Fermi.", Volume 62N. Zanichelli, 1976 - Nuclear physics |

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Page 82

To be specific I shall discuss mainly the rotational bands of light nuclei and how

their properties are described within the framework of the Hartree-Fock models

and the spherical-shell model with

To be specific I shall discuss mainly the rotational bands of light nuclei and how

their properties are described within the framework of the Hartree-Fock models

and the spherical-shell model with

**renormalization**. Section 2 of these notes will ...Page 106

The role of the model Hamiltonian and the kinetic energy in determining the

spectrum. – It is instructive to analyse this consistency treatment in some detail by

looking at the

separately ...

The role of the model Hamiltonian and the kinetic energy in determining the

spectrum. – It is instructive to analyse this consistency treatment in some detail by

looking at the

**renormalization**of each part of the Hamiltonian H = ho-H Vseparately ...

Page 124

some of the configurations formed by putting particles in the (28, 1d)-shell. In

particular he has shown that states of maximum orbital symmetry for "Ne can be ...

**Renormalization**in the "Ne spectrum. – ELLIOT has tabulated the classification ofsome of the configurations formed by putting particles in the (28, 1d)-shell. In

particular he has shown that states of maximum orbital symmetry for "Ne can be ...

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### Contents

Gruppo fotografico dei partecipanti al Corso fuori testo | 1 |

Simple ideas on reaction mechanisms | 19 |

B BUCK Nuclearstructure information from severalnucleon | 29 |

Copyright | |

39 other sections not shown

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### Common terms and phrases

alpha amplitude angle angular distribution angular momentum approximation C+*C calculation centre-of-mass co-ordinates collision compound nucleus configurations continuum core corresponding Coulomb barrier coupling cross-section curve decay deformation DWBA effective eigenstates elastic scattering emission excitation energy excitation functions exit channel experimental fission form factor fragments gamma-rays ground-state Hamiltonian Hartree-Fock heavy ions heavy-ion high-spin incident energy isospin isotopes kinetic energy Lett level density mass matrix elements measured molecular moment of inertia neutron Nucl nuclear nuclei nucleons observed obtained operator optical potential orbits oscillator parameter particle peak Phys projectile proton quadrupole quasi-atom quasi-bound region renormalization residual interaction resonances rotational band shell model shown in Fig shows single-particle spectra spectroscopic spectrum spherical spherical-shell model spin structure sudden approximation target tion transfer reactions transition two-proton transfer values wave function width X-rays Y-ray yrast