ePub Interaction of Radiation with Solids and Elementary Defect Production (Defects in Crystalline Solids) download
by C. Lehmann
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The interaction of energetic particles with solids is treated in . Lehman: Interaction of Radiation with Solids and Elementary Defect Production (North Holland, Amsterdam 1977 . oogle Scholar.
The interaction of energetic particles with solids is treated in . A. Sosin, W. Bauer: In Studies in Radiation Effects in Solids, Vo., ed. by . Dienes ( Gordon and Breach, New York 1969 )Google Scholar. Kochler: In Solid State Physics, Vo. by F. Seitz and D. Turnbull ( Academic, New York 1956 ) p. 307Google Scholar. Vineyard: Radiation Effects in Solids (Interscience New York 1957 )Google Scholar.
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Radiation Effects and Defects in Solids Citations: 1,144 Experimental and theoretical papers of both a fundamental and applied nature that contribute to the understanding of either phenomena induced by the interaction of radiation with condensed matter or defects in solids introduced not only by radiation but also by other. Experimental and theoretical papers of both a fundamental and applied nature that contribute to the understanding of either phenomena induced by the interaction of radiation with condensed matter or defects in solids introduced not only by radiation but also by otherĀ .
laser radiation interaction with solids A Defect Model for the Optical and EPR Activity of theT-Center in Yttrium-Stabilized Zirconia C. B. AZZONI, L. BOLIS, P. CAMAGNI, G. C. CAMPAGNOLI and . .
laser radiation interaction with solids. processing with a moving heat source was developed. Behavior of radiation defects in nanomaterials. A Defect Model for the Optical and EPR Activity of theT-Center in Yttrium-Stabilized Zirconia C. CAMPAGNOLI and M. DE SIMONE. 485. Influence of OH Impurities on the Relaxation of F Centers Studied with Picosecond Optical Pulses E. GUSTIN, W WENSELEERS, M. LEBLANS, A. BOUWEN and D. SCHOEMAKER.
6 Nordlund, . Ghaly, . Averback, R. Caturla, . Diaz de la Rubia, . and Tarus, . Phys Rev B 57, 7556 (1998). 7 Nordlund, K. and Averback, R. Phys. Rev. B 56, 2421 (1997).
A defect model for the optical and EPR activity of the T-center in yttrium-stabilized zirconia. An analytical description for high energy implantation profiles of boron and phosphorus into crystalline silicon has been developed
A defect model for the optical and EPR activity of the T-center in yttrium-stabilized zirconia. Bolis . Camagni . Campagnoli . Simone . e (Taylor & Francis Group, 1995-12-01). An analytical description for high energy implantation profiles of boron and phosphorus into crystalline silicon has been developed. With this description, high energy implantation profiles are simulated by using the sum.
Although the book is intended principally for the experimentalist some simple theoretical models have beenĀ .
Although the book is intended principally for the experimentalist some simple theoretical models have been introduced. It is also intended to provide a background for the technologist engaged in such fields as the ion implantation doping of semiconductors.
Real Crystalline solids are almost never perfect Real Crystalline solids are almost never perfect. These imperfections can be classified according to their dimensionality: Point defects (0-Dimension) Line defects (1-D) Interfacial defects (2-D) Bulk defects (3-D). Structural imperfections (defects) in crystalline solids. Published byWalter Goodwin Modified over 4 years ago. Embed.
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