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Silicon dioxide plays a central role in most contemporary
electronic and photonic technologies, from fiber optics for
communications and medical applications to
metal-oxide-semiconductor devices. Many of these applications
directly involve point defects, which can either be introduced
during the manufacturing process or by exposure to ionizing
radiation. They can also be deliberately created to exploit new
technologies. This book provides a general description of the
influence that point defects have on the global properties of the
bulk material and their spectroscopic characterization through ESR
and optical spectroscopy.
Silicon dioxide plays a central role in most contemporary
electronic and photonic technologies, from fiber optics for
communications and medical applications to
metal-oxide-semiconductor devices. Many of these applications
directly involve point defects, which can either be introduced
during the manufacturing process or by exposure to ionizing
radiation. They can also be deliberately created to exploit new
technologies. This book provides a general description of the
influence that point defects have on the global properties of the
bulk material and their spectroscopic characterization through ESR
and optical spectroscopy.
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