This book is written as a text for a course on non-relativistic nuclear reactions. It combines a thorough theoretical approach with applications to recent experimental results. The main formalisms used to describe nuclear reactions are explained clearly and coherently, and the reader is led from basic laws to the final formulae used to calculate measurable quantities.
This book is written as a text for a course on non-relativistic nuclear reactions. It combines a thorough theoretical approach with applications to recent experimental results. The main formalisms used to describe nuclear reactions are explained clearly and coherently, and the reader is led from basic laws to the final formulae used to calculate measurable quantities.
1.: Quantum theory of potential scattering 2.: Semiclassical scattering 3.: The wave-optical description of potential scattering 4.: The formal theory of potential scattering 5.: The formal theory of reactions 6.: The optical model 7.: Single-step approximations 8.: The coupled-channel description of direct reactions 9.: Fusion 10.: Compound nucleus reactions 11.: Deep-inelastic collisions. Phenomena and theory 12.: Analysis of deep-inelastic collisions, fusion and heavy ion induced fission.
1.: Quantum theory of potential scattering 2.: Semiclassical scattering 3.: The wave-optical description of potential scattering 4.: The formal theory of potential scattering 5.: The formal theory of reactions 6.: The optical model 7.: Single-step approximations 8.: The coupled-channel description of direct reactions 9.: Fusion 10.: Compound nucleus reactions 11.: Deep-inelastic collisions. Phenomena and theory 12.: Analysis of deep-inelastic collisions, fusion and heavy ion induced fission.
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