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Electronics and optics of solids --- Energy-band theory of solids --- Crystals --- -Electric insulators and insulation --- Semiconductors --- 538.9 --- Crystalline semiconductors --- Semi-conductors --- Semiconducting materials --- Semiconductor devices --- Electrical engineering --- Electronics --- Solid state electronics --- Bushings --- Insulation (Electric) --- Electric resistance --- Insulating materials --- Dielectrics --- Crystallography --- Powders --- Solids --- Band theory of solids --- Conduction band --- Crystallography, Mathematical --- Electrons --- Exciton theory --- Molecules --- Quantum theory --- Wave mechanics --- Defects --- Physics of condensed matter (in liquid state and solid state) --- Materials --- Electric insulators and insulation. --- Energy-band theory of solids. --- Semiconductors. --- Defects. --- 538.9 Physics of condensed matter (in liquid state and solid state) --- Electric insulators and insulation --- Lattice defects --- Twinning (Crystallography)
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Mechanical properties of solids --- Nonmetallic materials --- Point defects --- Crystals --- Matériaux non métalliques --- Cristaux --- Defects --- Défauts --- 538.91 --- -Nonmetallic materials --- -Point defects --- Defects, Point --- Dislocations in crystals --- Impurity centers --- Materials --- Crystallography --- Powders --- Solids --- Structures, including transitions --- 538.91 Structures, including transitions --- Matériaux non métalliques --- Défauts --- Lattice defects --- Twinning (Crystallography)
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Electronic excitation is a means to change materials properties. This book analyses the important features of the changes induced by electronic excitation, identifies what is critical, and provides a basis from which materials modification can be developed successfully. Electronic excitation by lasers or electron beams can change the properties of materials. In the last few years, there has been a mix of basic science, of new laser and electron beam tools, and of new needs from microelectronics, photonics and nanotechnology. This book extends and synthesises the science, addressing ideas like energy localisation and charge localisation, with detailed comparisons of experiment and theory. It also identifies the ways this understanding links to technological needs, like selective removal of material, controlled changes, altering the balance between process steps, and possibilities of quantum control. This book will be of particular interest to research workers in physics, chemistry, electronic engineering and materials science.
Materials --- Electronic excitation. --- Laser beams. --- Electron beams. --- Matériaux --- Excitation électronique. --- Faisceaux laser. --- Faisceaux électroniques. --- Effect of radiation on. --- Effets des rayonnements --- Effets des rayonnements. --- Materials. --- Materials--Effect of radiation on. --- Electronic excitation --- Laser beams --- Electron beams --- Chemical & Materials Engineering --- Engineering & Applied Sciences --- Materials Science --- Beams, Electron --- Electron optics --- Electronics --- Particle beams --- Beams, Laser --- Laser radiation --- Excitation, Electronic --- Electrons --- Exciton theory --- Materials, Effect of radiation on --- Radiation --- Effect of radiation on --- Matériaux --- Excitation électronique. --- Faisceaux électroniques.
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Nondestructive testing --- Reliability. --- Non-destructive testing - Reliability.
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