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

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Page 59

The label y contains any other specification of the internal state of the cluster as

well as its

Gordan factor for coupling T, and T to T., so it is analogous to the wellknown ...

The label y contains any other specification of the internal state of the cluster as

well as its

**isospin**T. The spectroscopic amplitude contains an**isospin**Clebsch–Gordan factor for coupling T, and T to T., so it is analogous to the wellknown ...

Page 62

Up to now the

(13), but it can be made explicit by writing the reduced matrix element in a form

reduced both in

Up to now the

**isospin**index has been omitted since it is not needed to derive eq.(13), but it can be made explicit by writing the reduced matrix element in a form

reduced both in

**isospin**space and ordinary space (14) <oz;"|yo – (T, TT.Page 134

There should also be an

been left out of eq. (6.1) on the understanding that where one sees angular-

momentum coupling one must also introduce

shows ...

There should also be an

**isospin**coupling but in the interest of brevity this hasbeen left out of eq. (6.1) on the understanding that where one sees angular-

momentum coupling one must also introduce

**isospin**coupling. Equation (6.1b)shows ...

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### Contents

Introduction | 1 |

Generator coordinate DWBA for heavy ions | 8 |

Simple ideas on reaction mechanisms | 19 |

Copyright | |

44 other sections not shown

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### Common terms and phrases

angle angular distribution angular momentum approximation assumed average band barrier calculation channel cluster collision complete compound nucleus configurations consider core corresponding Coulomb coupling cross-section curve decay defined deformation depends described direct discussed distance effective elastic scattering emission emitted example excitation energy excitation function expected experimental experiments expression factor final fission fragments given gives Hamiltonian Hartree-Fock heavy ions higher integral interaction interesting internal level density levels mass matrix elements means measured mechanism neutron nuclear nucleons observed obtained operator optical orbital oscillator parameter particle Phys possible potential present probability projectile reaction region relative residual resonances respectively rotational scattering shape shell model shown simple single-particle space spectra spectrum structure surface theory tion transfer transition values wave function X-rays yrast