書誌事項

Nuclear decay modes

edited by D.N. Poenaru

(Fundamental and applied nuclear physics series / series editors, R.R. Betts, W. Greiner and W.D. Hamilton)

Institute of Physics Pub., c1996

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注記

Includes bibliographical references and index

内容説明・目次

内容説明

Nuclear Decay Modes provides a comprehensive reference to the modern aspects of the physics of all kinds of nuclear decay modes. Specifically, it will prove interesting to those involved in: proton, beta, alpha, cluster (C, O, F, Ne, Mg, Si) decays, spontaneous fission from ground state and shape isomeric states, ternary fission, beta-delayed particle emissions (p, 2p, n, 2n, 3n, 4n, d, t, alpha, fission) as well as multifragment break-up of highly excited nuclear matter. Taken as a whole, this book provides an authoritative and balanced coverage of theory and experiment from a variety of distinguished contributors.

目次

  • Contributors. Preface. Beta decay (J Bockholt, M Hirsch and H V Klapdor-Kleingrothaus): Introduction
  • Theoretical description of nuclear ^D*B decay
  • Calculations of ^D*B-delayed processes
  • ^D*B^D*B decay
  • The rest mass of the neutrino
  • Astrophysical processes. Beta-delayed particle emission (B Jonson and G Nyman): Introduction
  • Experimental techniques for production of drip-line nuclei
  • Experimental progress
  • ^D*B-delayed particle emission and nuclear structure
  • ^D*B-delayed particle emission and nuclear astrophysics
  • Concluding remarks. Proton radioactivity (S Hofmann): Introduction
  • Fundamentals
  • Experimental techniques
  • Experiments for investigation of proton radioactivity
  • Spectroscopic aspects and predictions. Traditional and fission approach to alpha decay (D N Poenaru, E Hourany and W Greiner): Introduction
  • Traditional theories
  • Numerical superasymmetric fission models
  • Semiempirical formulae for half-lives. Alpha decay (E Roeckl): Introduction
  • From alpha decay measurements to nuclear structure data
  • Experimental techniques
  • Examples of recent alpha decay studies
  • Concluding remarks. Theories of cluster radioactivities (D N Poenaru and W Greiner): Introduction
  • Fragmentation theory
  • Analytical superasymmetric fission model
  • Characteristics of other theories
  • Fission dynamics in a wide range of mass asymmetry
  • Summary. Many-body approach to alpha and cluster radioactivity (R Blendowske, T Fliessbach and H Walliser): Decay constant
  • Results
  • Discussion
  • Summary. Carbon decay and fine structure (E Hourany): Introduction
  • Techniques
  • Experiments
  • Results
  • Fine structure. Experiments on heavy cluster (O, F, Ne, Mg, Si) radioactivities (R Bonetti and A Guglielmetti): Introduction
  • Experimental techniques
  • Experimental results
  • Discussion. Spontaneous fission (D C Hoffman, T M Hamilton and M R Lane): Introduction
  • Half-lives
  • Properties of the fission fragments
  • Comparison with theory. The macroscopic-microscopic method and fission isomers (D N Poenaru and I-H Plonski): Introduction
  • Surface parametrization
  • Liquid drop models
  • Analytical relationships
  • Two-centre shell model
  • Shell and pairing corrections
  • Applications
  • Fission isomers. Particle-accompanied fission (M Mutterer and J P Theobald): Introduction and fundamentals
  • Theoretical models
  • Light-particle emission probability
  • Light-particle energy distributions
  • Multiparameter studies of ternary fission. Multifragment break-up of highly excited nuclear clusters (J Konopka and H St^D"ocker): Introduction
  • Nuclear equations of state at low densities
  • Theoretical models of multifragmentation
  • Heavy-ion collisions: the experimentally accessible case
  • Concluding remarks. Index.

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