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Advances in Nuclear Physics: Volume 4: Advances in Nuclear Physics, cartea 4

Autor Michel Baranger, Erich Vogt
en Limba Engleză Paperback – 31 ian 2013
The present volume reaffirms nuclear physics as an experimental science since the authors are primarily experimentalists and since the treatment of the topics might be said to be "experimental." (This is no reflection on the theoretical competence of any of the authors.) The subject of high-spin phenomena in heavy nuclei has grown much beyond the idea of "backbending" which gave such an impetus to its study five years ago. It is a rich, new field to which Lieder and Ryde have contributed greatly. The article "Valence and Doorway Mechanisms in Resonance Neutron Capture" is, in contradistinction, an article pertaining to one of the oldest branches of nuclear physics-and it brings back one of our previous authors. The Doppler-shift method, reviewed by Alexander and Forster, is one of the important new experimental techniques that emerged in the previous decade. This review is intended, deliberately, to describe thoroughly a classic technique whose elegance epitomizes much of the fascination which nuclear physics techniques have held for a generation of scientists. This volume concludes the work on the Advances in Nuclear Physics series of one of the editors (M. Baranger), whose judgment and style characterize that which is best in the first ten volumes. Many of our readers and most of our authors will be grateful for the high standards which marked his contributions and which often elicited extra labor from the many authors of the series.
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Specificații

ISBN-13: 9781461582304
ISBN-10: 146158230X
Pagini: 468
Ilustrații: XVI, 448 p.
Dimensiuni: 152 x 229 x 25 mm
Greutate: 0.62 kg
Ediția:Softcover reprint of the original 1st ed. 1971
Editura: Springer Us
Colecția Springer
Seria Advances in Nuclear Physics

Locul publicării:New York, NY, United States

Public țintă

Research

Cuprins

1 The Investigation of Hole States in Nuclei by Means of Knockout and Other Reactions.- 1. Introduction.- 2. Formalism for Knockout and Pickup Reactions.- 3. Single-Nucleon Knockout and Related Reactions.- 4. Cluster Knockout and Related Reactions.- 5. Other Reactions.- 6. Summary and Conclusions.- Acknowledgments.- References.- 2 High-Energy Scattering from Nuclei.- 1. Introduction.- 2. Models of High-Energy Scattering. Scattering of Objects with “Preexisting” Subunits.- 3. Existing Evidence Supporting Our Understanding of the High-Energy Scattering.- 4. Scattering of Objects without “Preexisting” Subunits. Scattering from Fluctuations.- 5. Prospects of what Nuclear Physics and Particle Physics Can Learn from High-Energy Nuclear Scattering.- 6. Concluding Remarks.- Acknowledgments.- Appendix A.- Appendix B.- References.- 3 Nucleosynthesis by Charged-Particle Reactions.- 1. Introduction.- 2. Charged-Particle Reaction Rates.- 3. Hydrogen Burning.- 4. Helium Burning.- 5. Synthesis of the Nuclei with 20 ? A ? 60.- 6. Synthesis of the Nuclei with A ? 60 and the l-Process.- 7. Nucleosynthesis in Massive Exploding Objects.- Acknowledgments.- References.- 4 Nucleosynthesis and Neutron-Capture Cross Sections.- 1. Introduction.- 2. Development of Neutron Buildup Theory.- 3. Stellar Neutron Sources.- 4. Neutron Capture Cross Sections.- 5. Abundance-Cross-Section Correlations.- 6. Conclusion.- Acknowledgments.- References.- 5 Nuclear Structure Studies in the Z = 50 Region.- 1. Introduction.- 2. Experimental Data.- 3. Theoretical Calculations.- 4. Conclusion.- Acknowledgments.- References.- General References.- Even-Mass Tin Isotopes.- Odd-Mass Tin Isotopes.- Odd-Mass Antimony Isotopes.- Odd-Mass Indium Isotopes.- Pittsburgh Calculations.- Trieste Calculations.- ChalkRiver Calculations.- 6 An s—d-Shell-Model Study for A = 18–22.- 1. Introduction.- 2. Model Hamiltonians.- 3. Excitation Energies and Spectroscopic Factors.- 4. Ground-State Binding Energies.- 5. Electric Quadrupole Moments and E2 Transitions.- 6. Magnetic Moments and M1 Transitions.- 7. Summary and Final Remarks.- Acknowledgments.- Appendix A. Shell-Model Basis and Methods.- A.1. Coupling Scheme.- A.2. Phases.- A.3. Computer Codes.- References.