Fast ion-atom collisions are of paramount importance in many high-priority branches of science and technology, including accelerator-based physics, controlled thermonuclear fusion, plasma and space research, particle transport physics, and more. This book focuses on multifaceted mechanisms of collisional phenomena with heavy ions and atoms at non-relativistic high energies. It provides a state-of-the-art review of the non-relativistic theory of high-energy ion-atom collisions. The author covers the most important theoretical methods currently available, examines cross sections and collisional…mehr
Fast ion-atom collisions are of paramount importance in many high-priority branches of science and technology, including accelerator-based physics, controlled thermonuclear fusion, plasma and space research, particle transport physics, and more. This book focuses on multifaceted mechanisms of collisional phenomena with heavy ions and atoms at non-relativistic high energies. It provides a state-of-the-art review of the non-relativistic theory of high-energy ion-atom collisions. The author covers the most important theoretical methods currently available, examines cross sections and collisional rates for fast ion-atom collisions, and discusses simultaneous electron transfer and ionization.
Basic Notions and Main Observables in Scattering Problems. Requirements of the Theory for the Experiment. Continuous Spectrum and Eigen-Problems of Resolvents. Linear and Bilinear Functionals. Definition of a Quantum Scattering Event. The Adiabatic Theorem and the Abel Strong Limit. Non-Stationary and Stationary Scattering via Strong Limits. Scattering Matrix and Transition Matrix. Spectral Analysis of Operators. The Existence and Completeness of Møller Wave Operators. Four-Body Theories for Fast Ion-Atom Collisions. Perturbation Series with the Correct Boundary Conditions. The Dodd-Greider Series for Four-Body Collisions. Double Electron Capture. Simultaneous Transfer and Ionization. Single Electron Detachment. Single Electron Capture. Simultaneous Transfer and Excitation. Concluding Remarks and Outlooks. Index.
Basic Notions and Main Observables in Scattering Problems. Requirements of the Theory for the Experiment. Continuous Spectrum and Eigen-Problems of Resolvents. Linear and Bilinear Functionals. Definition of a Quantum Scattering Event. The Adiabatic Theorem and the Abel Strong Limit. Non-Stationary and Stationary Scattering via Strong Limits. Scattering Matrix and Transition Matrix. Spectral Analysis of Operators. The Existence and Completeness of Møller Wave Operators. Four-Body Theories for Fast Ion-Atom Collisions. Perturbation Series with the Correct Boundary Conditions. The Dodd-Greider Series for Four-Body Collisions. Double Electron Capture. Simultaneous Transfer and Ionization. Single Electron Detachment. Single Electron Capture. Simultaneous Transfer and Excitation. Concluding Remarks and Outlooks. Index.
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