Dynamic Structure of Nuclear States

The Mont Tremblant International Summer Scholl was primarily concerned with the dynamic structure of nuclear states. The papers presented at that summer school in August, 1971, are reproduced in this volume.

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Bibliographic Details
Main Author: Rowe, David J.
Other Authors: Trainor, Lynn E. H., Wong, Samuel S. M.
Format: Electronic eBook
Language:English
Published: Toronto : University of Toronto Press, 1972.
Series:Heritage.
Online Access:CONNECT

MARC

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505 0 |a Cover; PREFACE; SECTION 1 THEORIES OF THE STRUCTURE AND SYSTEMATICS OF NUCLEAR STATES; F.M.H. Villars: HARTREE-FOCK THEORY AND COLLECTIVE MOTION; Time-dependent Hartree-Fock theory and collective canonical equations; Construction of the collective Hamiltonian; BCS theory; References; A. Klein: THEORIES OF COLLECTIVE MOTION; General methods in the collective description of a monopole degree of freedom; Illustration of various microscopic methods for an exactly soluble model; References; D.J. Rowe: EQUATIONS OF MOTION APPROACH TO NUCLEAR SPECTROSCOPY; Introduction 
505 8 |a The equations of motion for excitation operatorsHartree-Fock self-consistent field theory; Particle-hole excitations; Equations of motion for non-scalar nuclei; Appendix (by T.W. Donnelly): application to inelastic electron scattering; References; J.B. French: NUCLEAR SYMMETRIES AND DISTRIBUTIONS; Introduction; Fermion spaces; The limiting spectrum for non-interacting particles; Scalar moments and polynomial propagators; Unitary-group decompositions: qualitative discussion; Unitary-group decompositions: some formal results; Binding energies and spectra; Orbit and state occupancies 
505 8 |a Fixed energy averagesLevel densities; More general symmetries; Final remarks; References; T.T.S. Kuo: FOLDED DIAGRAMS; Introduction; Model-space eigenvalue problem; Folded diagrams; Factorization of U(0,-∞) |Oj>; Secular equation; Effective interaction; Concluding remarks; References; SECTION 2 CLUSTERING AND FISSION PHYSICS; W.D. Myers: THE DROPLET MODEL; Introduction; Liquid drop model; Relationship of many-body theories; Hill-Wheeler box; Droplet model; Applications; Final remarks; Summary; References; M. Harvey: BINARY CLUSTERING WITH REFERENCE TO FISSION; A perspective 
505 8 |a A review of alpha particle cluster states in the region 16O to 20NeReferences; J. Goldemberg: PROMPT AND DELAYED PHOTOFISSION; The liquid drop model; The Strutinsky model; The Franck-Condon principle; Experiment on the photoexcitation of fission isomers; Photofission in U238 and Th232; References; J.W. Knowles: EXPERIMENTS ON PHOTOFISSION IN HEAVY ELEMENTS; Introduction; Photofission cross section measurements; Angular distribution measurements; Discussion; References; SECTION 3 ROLE OF NUCLEAR DYNAMICS IN ELEMENT FORMATION 
500 |a A.G.W. Cameron: NUCLEOSYNTHESIS AND THE FORMATION OF SUPERHEAVY ELEMENTS 
520 |a The Mont Tremblant International Summer Scholl was primarily concerned with the dynamic structure of nuclear states. The papers presented at that summer school in August, 1971, are reproduced in this volume. 
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880 8 |6 505-00/(S  |a Distribution of binding energy in ground stateA double shell model for binary fission; α-cluster structure of 8Be; Generalization to fission; Conclusions; References and notes; A. Arima: SHELL MODEL, QUARTETS AND CLUSTERS IN LIGHT NUCLEI; Shell model calculations of 20Ne and 22Ne; Spectroscopic factors and alpha-transfer reactions; Quartet states; Shell model and cluster model of 20Ne; References; A.E. Litherland: EXPERIMENTAL EVIDENCE FOR ALPHA PARTICLE CLUSTER STATES IN THE REGION 16O TO 20Ne; Some alpha particle cluster states in 18F 
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