Nuclear fission and cluster radioactivity : an energy-density functional approach
It is the first application to nuclear physics from energy-density functional method, for which Professor Walter Kohn received the Nobel Prize in Chemistry. The book presents a comprehensive extension of the Bohr-Wheeler theory with the present knowledge of nuclear density distribution function.
Enregistré dans:
| Auteurs principaux: | , , |
|---|---|
| Format: | Livre numérique |
| Sprog: | Anglais |
| Udgivet: |
Berlin, Heidelberg :
Springer Berlin Heidelberg
2005.
Cham : Springer Nature |
| Online adgang: | Accès sur la plateforme de l'éditeur Accès sur la plateforme Istex Accès Université d'Orléans Accès INSA CVL |
| Kommentar: |
Archives Springer e-books (Licence nationale) Archives Springer e-books (Licence nationale) |
| Autres localisations: | Voir dans le Sudoc |
| Edition sous un autre format: | • Nuclear Fission and Cluster Radioactivity, Texte imprimé, 9783540233022 • Nuclear Fission and Cluster Radioactivity, Texte imprimé, 9783540804369 • Nuclear Fission and Cluster Radioactivity, Texte imprimé, 9783642062346 |
Indholdsfortegnelse:
- A Summary of Observed Data and Pre-Amble
- Energy-Density Functional Formalism and Nuclear Masses
- The Decay Process, Fission Barrier, Half-Lives, and Mass Distributions in the Energy-Density-Functional Approach
- Spontaneous Fission Half-Lives of Fermium and Super-Heavy Elements
- Empirical Barrier and Spontaneous Fission
- Induced Fission
- Hot and Cold Fission
- Isomer Fission
- Cluster Radioactivity
- The Relation Between the Asymptotic Kinetic Energy, and the Condition for the Existence of a Meta-Stable State
- The Expression for Half-Lives of Particles Tunneling Through the Barrier Shown in Fig. A. 2
- Diagonalization of the Coupled Set of Equations Describing Fission.

