Proceedings of the Nuclear Physics Part of the Fifth Nishinomiya-Yukawa Memorial Symposium, Nishinomiya, Japan, October 25 and 26, 1990
First Statement of Responsibility
edited by Yasuhisa Abe, Hisashi Horiuchi, Kenichi Matsuyanagi.
.PUBLICATION, DISTRIBUTION, ETC
Place of Publication, Distribution, etc.
Berlin, Heidelberg
Name of Publisher, Distributor, etc.
Springer Berlin Heidelberg
Date of Publication, Distribution, etc.
1992
PHYSICAL DESCRIPTION
Specific Material Designation and Extent of Item
(viii, 297 pages 90 illustrations)
SERIES
Series Title
Springer proceedings in physics, 58.
CONTENTS NOTE
Text of Note
Collective Versus Statistical Aspects of Nuclear Motion --; Tests of Fundamental Symmetries in Compound-Nucleus Scattering --; Chaos in Nuclei --; Ericson Fluctuations Versus Conductance Fluctuations: Similarities and Differences --; Hot Nuclei --; Landau Theory, Thermal Fluctuations and Dissipation --; Dissipation and Thermal Fluctuations in Heavy-Ion Collisions --; Multi-Dimensional Tunneling and Nuclear Fission --; Phase-Space Dynamics of Heavy-Ion Reactions --; Quantum Chaology: Our Knowledge and Ignorance --; True Quantum Chaos? An Instructive Example --; Toward the Fundamental Theory of Nuclear Matter Physics: The Microscopic Theory of Nuclear Collective Dynamics --; Mean Field Dynamics and Low-Lying Collective Excitations --; Rotational Motion in Warm Atomic Nuclei --; Collectivity and Chaoticity in Nuclear Dynamics --; Index of Contributors.
SUMMARY OR ABSTRACT
Text of Note
New Trends in Nuclear Collective Dynamics emphasizes research toward understanding collective and statistical aspects of nuclear dynamics. Well-known lecturers from centers of nuclear research present reviews of recent developments. The topics covered are: -order and chaos in finite quantum systems -dissipation in heavy-ion collisions -collective motionsin warm nuclei -time-dependent mean-field theory with collision terms -nuclear fission and multi-dimensional tunneling -large-scale collective motion.
TOPICAL NAME USED AS SUBJECT
Nuclear fusion.
Nuclear physics.
Physics.
PERSONAL NAME - PRIMARY RESPONSIBILITY
edited by Yasuhisa Abe, Hisashi Horiuchi, Kenichi Matsuyanagi.