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Radiation Damage Effects in Solids by Hardev Singh Virk Pdf
Volume is indexed by Thomson Reuters BCI (WoS). Public interest and concern about radiation damage effects has increased during recent times. Nuclear radiation proved to be a precursor for the study of radiation damage effects in solids. In general, all types of radiation, e.g. X-ray, gamma ray, heavy ions, fission fragments and neutrons produce damage effects in materials. Radiation damage latent tracks in solids find applications in nuclear and elementary particle physics, chemistry, radiobiology, earth sciences, nuclear engineering, and a host of other areas such as nuclear safeguards, virus counting, ion track filters, uranium exploration and archaeology. Radiation dosimetry and reactor shielding also involve concepts based on radiation damage in solids. This special volume consists of ten Chapters, including Review and Research Papers on various topics in this field.
Radiation Effects in Solids by George Julian Dienes,G. H. Vineyard Pdf
Introduction -- The interaction of radiation with matter -- Basic experiments -- Nature and properties of the defects -- Annealing of defects -- Special topics.
Radiation Damage in Solids by Douglas S. Billington Pdf
Crystalline defects and their detection -- Radiation damage theory -- Radiation damage in semiconductors -- Radiation damage in ionic and covalent crystals -- Radiation damage in metals -- Radiation damage in uranium -- Special seminars.
Kurt E. Sickafus,Eugene A. Kotomin,Blas P. Uberuaga
Author : Kurt E. Sickafus,Eugene A. Kotomin,Blas P. Uberuaga Publisher : Springer Science & Business Media Page : 593 pages File Size : 41,7 Mb Release : 2007-05-22 Category : Science ISBN : 9781402052958
Radiation Effects in Solids by Kurt E. Sickafus,Eugene A. Kotomin,Blas P. Uberuaga Pdf
This is a comprehensive overview of fundamental principles and relevant technical issues associated with the behavior of solids exposed to high-energy radiation. These issues are important to the development of materials for existing fission reactors or future fusion and advanced reactors for energy production; to the development of electronic devices such as high-energy detectors; and to the development of novel materials for electronic and photonic applications.
Ion Beam Modification of Solids by Werner Wesch,Elke Wendler Pdf
This book presents the method of ion beam modification of solids in realization, theory and applications in a comprehensive way. It provides a review of the physical basics of ion-solid interaction and on ion-beam induced structural modifications of solids. Ion beams are widely used to modify the physical properties of materials. A complete theory of ion stopping in matter and the calculation of the energy loss due to nuclear and electronic interactions are presented including the effect of ion channeling. To explain structural modifications due to high electronic excitations, different concepts are presented with special emphasis on the thermal spike model. Furthermore, general concepts of damage evolution as a function of ion mass, ion fluence, ion flux and temperature are described in detail and their limits and applicability are discussed. The effect of nuclear and electronic energy loss on structural modifications of solids such as damage formation, phase transitions and amorphization is reviewed for insulators and semiconductors. Finally some selected applications of ion beams are given.