Charged Particle and Photon Interactions with Matter: Recent Advances, Applications, and Interfaces

Author:   Yoshihiko Hatano (Tokyo Institute of Technology, Japan) ,  Yosuke Katsumura (University of Tokyo, Japan) ,  A. Mozumder (University of Notre Dame, Indiana, USA)
Publisher:   Taylor & Francis Inc
ISBN:  

9781439811771


Pages:   1064
Publication Date:   13 December 2010
Format:   Hardback
Availability:   In Print   Availability explained
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Charged Particle and Photon Interactions with Matter: Recent Advances, Applications, and Interfaces


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Author:   Yoshihiko Hatano (Tokyo Institute of Technology, Japan) ,  Yosuke Katsumura (University of Tokyo, Japan) ,  A. Mozumder (University of Notre Dame, Indiana, USA)
Publisher:   Taylor & Francis Inc
Imprint:   CRC Press Inc
Dimensions:   Width: 17.80cm , Height: 5.10cm , Length: 25.40cm
Weight:   1.973kg
ISBN:  

9781439811771


ISBN 10:   1439811776
Pages:   1064
Publication Date:   13 December 2010
Audience:   College/higher education ,  General/trade ,  Tertiary & Higher Education ,  General
Format:   Hardback
Publisher's Status:   Active
Availability:   In Print   Availability explained
This item will be ordered in for you from one of our suppliers. Upon receipt, we will promptly dispatch it out to you. For in store availability, please contact us.

Table of Contents

Introduction. Oscillator Strength Distribution of Molecules in the Gas Phase in the Vacuum Ultraviolet Range and Dynamics of Singly Inner-Valence Excited and Multiply Excited States as Superexcited States. Electron Collisions with Molecules in the Gas Phase. Time-Dependent Density Functional Theory for Oscillator Strength Distribution. Generalized Oscillator Strength Distribution of Liquid Water. New Directions in W-Value Studies. Positron Annihilation in Radiation Chemistry. Muon Interactions with Matter. Electron Localization and Trapping in Hydrocarbon Liquids. Reactivity of Radical Cations in Non-Polar Condensed Matter. Radiation Chemistry and Photochemistry of Ionic Liquids. Time Resolved Study on Nonhomogeneous Chemistry Induced by Ionizing Radiation with Low LET in Water and Polar Solvents at Room Temperature. Radiation Chemistry of Liquid Water with Heavy Ions: Steady-State and Pulse Radiolysis Studies. Radiation Chemistry of Liquid Water with Heavy Ions: Monte-Carlo Simulation Studies. Radiation Chemistry of High Temperature and Supercritical Water and Alcohols. Radiation Chemistry of Water with Ceramic Oxides. Ionization of Solute Molecules at the Liquid Water Surface, Interfaces, and Self-Assembled Systems. Low-Energy Electron Stimulated Reactions in Nanoscale Water Films and Water:DNA Interfaces. Physicochemical Mechanisms of Radiation Induced DNA Damage. Spectroscopic Study of Radiation-Induced DNA Lesions and Their Susceptibility to Enzymatic Repair. Application of Microbeams to the Study of the Biological Effects of Low Dose Irradiation. Redox Reactions of Antioxidants: Contributions from Radiation Chemistry of Aqueous Solutions. Computational Human Phantoms and Their Applications to Radiation Dosimetry. Cancer Therapy with Heavy Ion Beam. Nanoscale Charge Dynamics and Nanostructure Formation in Polymers. Radiation Chemistry of Resist Materials and Processes in Lithography. Radiation Processing of Polymers and Its Applications. UV Molecular Spectroscopy from Electron Impact for Applications to Planetary Atmospheres and Astrophysics. Chemical Evolution on Interstellar Grains at Low Temperatures. Radiation Effects on Semiconductors and Polymers for Space Applications. Application of Rare Gas Liquids to Radiation Detector. Application of Ionizing Radiation to Environmental Conversion. Applications to Biotechnology: Ion-Beam Breeding of Plants. Radiation Chemistry in Nuclear Engineering. Index.

Reviews

I think that PhD students, postgrads and pure physics researchers will get most use from this text, particularly those who have read the earlier 2004 publication. However, I think that some of the chapters covering newer areas of research (e.g. environmental conservation) should provide any reader starting out with a comprehensive introduction with references. -SCOPE, 2011


I think that PhD students, postgrads and pure physics researchers will get most use from this text, particularly those who have read the earlier 2004 publication. However, I think that some of the chapters covering newer areas of research (e.g. environmental conservation) should provide any reader starting out with a comprehensive introduction with references. —SCOPE, 2011


I think that PhD students, postgrads and pure physics researchers will get most use from this text, particularly those who have read the earlier 2004 publication. However, I think that some of the chapters covering newer areas of research (e.g. environmental conservation) should provide any reader starting out with a comprehensive introduction with references. --SCOPE, 2011


Author Information

Yoshihiko Hatano is director general of the Advanced Science Research Center at the Japan Atomic Energy Agency and professor emeritus at the Tokyo Institute of Technology. Dr. Hatano is the author or coauthor of more than 280 refereed journal articles, scientific papers, and books. His research interests include primary and fundamental processes in charged particle and photon interactions with matter, spectroscopy and dynamics of superexcited states in photonic or electronic collisions with molecules, electron attachment and recombination, and collisional de-excitation of excited rare gas atoms. Yosuke Katsumura is a professor at the University of Tokyo and a group leader of Basic Radiation Research at the Japan Atomic Energy Agency. Dr. Katsumura has published more than 220 articles in peer-reviewed journals and books. His recent interests include radiolysis of supercritical water, ultrafast pulse radiolysis, and heavy ion beam radiolysis of water. Asokendu Mozumder is research professor emeritus in the Radiation Laboratory and Department of Chemistry at the University of Notre Dame. Dr. Mozumder is the author or coauthor of nearly 125 articles in refereed journals. His research interests include theoretical aspects of radiation chemistry, early stages of radiolysis, theories of electron localization and trapping, and free-ion yield and mobility in liquid hydrocarbons.

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