Description

Book Synopsis
The principal goal of this book is to provide state-of-the-art coverage of the non-relativistic three- and four-body theories at intermediate and high energy ion-atom and ion-molecule collisions. The focus is on the most frequently studied processes: electron capture, ionization, transfer excitation and transfer ionization. The content is suitable both for graduate students and experienced researchers. For these collisions, the literature has seen enormous renewal of activity in the development and applications of quantum-mechanical theories. This subject is of relevance in several branches of science and technology, like accelerator-based physics, the search for new sources of energy and high temperature fusion of light ions. Other important applications are in life sciences via medicine, where high-energy ion beams are used in radiotherapy for which a number of storage ring accelerators are in full operation, under construction or planned to be built worldwide. Therefore, it is necessary to review this field for its most recent advances with an emphasis on the prospects for multidisciplinary applications.

Table of Contents
Electron Capture Processes in Ion-Atom Collisions at Intermediate Projectile Energies (M Schulz, A L Harris, T Kirchner and D H Madison); COLTRIMS Experiments on State-Selective Electron Capture in Alpha-He Collisions at Intermediate Energies (M Alessi, S Otranto and P Focke); Recent Advances in the Theory and the Modeling of Multiple Processes in Heavy-Particle Collisions (T Kirchner, M Zapukhlyak, M F Ciappina and M Schulz); A Four-Body Model for Charge Transfer Collisions (A L Harris, J L Peacher and D H Madison); The Continuum Distorted Wave Method for Energetic Ion-Atom Collisions (S D Kunikeev); Critical Assessment of Theoretical Methods for Collisions between Lithium Nuclei with Helium at Intermediate and High Impact Energies (Dz Belkic, I Mancev and N Milojevic); Study of Inelastic Processes in Ion-Water Collisions Using Classical (CTMC) and Semi-Classical Methods (L F Errea, C Illescas, P M M Gabas, L Mendez, I Rabadan, A Riera and B Pons); Proton Beam Irradiation of Liquid Water: A Combined Molecular Dynamics and Monte Carlo Simulation Study of the Bragg Peak Profile (R Garcia-Molina, I Abril, P de Vera, I Kyriakou and D Emfietzoglou).

Fast Ion-atom And Ion-molecule Collisions

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A Hardback by Dzevad Belkic

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    View other formats and editions of Fast Ion-atom And Ion-molecule Collisions by Dzevad Belkic

    Publisher: World Scientific Publishing Co Pte Ltd
    Publication Date: 24/11/2012
    ISBN13: 9789814407120, 978-9814407120
    ISBN10: 9814407127

    Description

    Book Synopsis
    The principal goal of this book is to provide state-of-the-art coverage of the non-relativistic three- and four-body theories at intermediate and high energy ion-atom and ion-molecule collisions. The focus is on the most frequently studied processes: electron capture, ionization, transfer excitation and transfer ionization. The content is suitable both for graduate students and experienced researchers. For these collisions, the literature has seen enormous renewal of activity in the development and applications of quantum-mechanical theories. This subject is of relevance in several branches of science and technology, like accelerator-based physics, the search for new sources of energy and high temperature fusion of light ions. Other important applications are in life sciences via medicine, where high-energy ion beams are used in radiotherapy for which a number of storage ring accelerators are in full operation, under construction or planned to be built worldwide. Therefore, it is necessary to review this field for its most recent advances with an emphasis on the prospects for multidisciplinary applications.

    Table of Contents
    Electron Capture Processes in Ion-Atom Collisions at Intermediate Projectile Energies (M Schulz, A L Harris, T Kirchner and D H Madison); COLTRIMS Experiments on State-Selective Electron Capture in Alpha-He Collisions at Intermediate Energies (M Alessi, S Otranto and P Focke); Recent Advances in the Theory and the Modeling of Multiple Processes in Heavy-Particle Collisions (T Kirchner, M Zapukhlyak, M F Ciappina and M Schulz); A Four-Body Model for Charge Transfer Collisions (A L Harris, J L Peacher and D H Madison); The Continuum Distorted Wave Method for Energetic Ion-Atom Collisions (S D Kunikeev); Critical Assessment of Theoretical Methods for Collisions between Lithium Nuclei with Helium at Intermediate and High Impact Energies (Dz Belkic, I Mancev and N Milojevic); Study of Inelastic Processes in Ion-Water Collisions Using Classical (CTMC) and Semi-Classical Methods (L F Errea, C Illescas, P M M Gabas, L Mendez, I Rabadan, A Riera and B Pons); Proton Beam Irradiation of Liquid Water: A Combined Molecular Dynamics and Monte Carlo Simulation Study of the Bragg Peak Profile (R Garcia-Molina, I Abril, P de Vera, I Kyriakou and D Emfietzoglou).

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