## Proceedings of the International School of Physics "Enrico Fermi.", Volume 69N. Zanichelli, 1977 - Nuclear physics |

### From inside the book

Results 1-3 of 61

Page 59

The available results on two - neutron transfer

states in Sn nuclei are also given in fig . 3. It is apparent that the two impor10 0.0

2.47 E ( MeV ) 0.08 0.04 5 0.04 2.47 0.05 / 2.22 to 2.08 1.85 0.18 0.03 0.06 1.1 -

1.0 ...

The available results on two - neutron transfer

**cross**-**sections**populating 0+states in Sn nuclei are also given in fig . 3. It is apparent that the two impor10 0.0

2.47 E ( MeV ) 0.08 0.04 5 0.04 2.47 0.05 / 2.22 to 2.08 1.85 0.18 0.03 0.06 1.1 -

1.0 ...

Page 336

Differential

region of 208Pb by 96 MeV alphas ( Ex = 10.8 MeV ) , in comparison with

measured values [ 68 ] . The predicted contribution ( times 2 ) from 2+ excitations

alone is ...

Differential

**cross**-**sections**predicted for the excitation of the giant - resonanceregion of 208Pb by 96 MeV alphas ( Ex = 10.8 MeV ) , in comparison with

measured values [ 68 ] . The predicted contribution ( times 2 ) from 2+ excitations

alone is ...

Page 439

In both instances an overall renormalization was applied to the theoretical results

to bring them into average consistency with the experimental

normalization is the conventional one for zero - range DWBA calculations for ...

In both instances an overall renormalization was applied to the theoretical results

to bring them into average consistency with the experimental

**crosssections**. Thisnormalization is the conventional one for zero - range DWBA calculations for ...

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### Contents

Rotational degrees of freedom Deformation and | 3 |

86 | 8 |

the framework of a course such as the present The topics selected by | 10 |

Copyright | |

41 other sections not shown

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addition angular momentum appears approximation associated backbending band calculated closed collective compared comparison components configurations consider contributions corresponding coupling cross-sections deformation density dependence describe determined discussed distribution effects electron equations estimate evidence example excitation energy expected experiment experimental expression fact factor field given gives ground Hamiltonian hole included increase indicate inertia interaction Lett levels limit mass matrix elements measured modes motion neutron Nucl nuclear nuclei nucleons observed obtained operator orbits oscillator pairing parameters particle particular peak Phys physical possible potential predictions present processes proton quadrupole reaction region relation relative resonance respect rotational rule scattering seen shape shell model shown in fig shows simple single single-particle space spectra spectrum strength strong structure surface symmetry theory tion transfer transition values vibrational wave functions