Electronic Structure And Properties Of Point Defects In Diamond


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Electronic Structure and Properties of Point Defects in Diamond


Electronic Structure and Properties of Point Defects in Diamond

Author: Sanjay Chawla

language: en

Publisher:

Release Date: 1996


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Diamond: Electronic Properties and Applications


Diamond: Electronic Properties and Applications

Author: Lawrence S. Pan

language: en

Publisher: Springer Science & Business Media

Release Date: 2013-11-27


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The use of diamond for electronic applications is not a new idea. As early as the 1920's diamonds were considered for their use as photoconductive detectors. However limitations in size and control of properties naturally limited the use of diamond to a few specialty applications. With the development of diamond synthesis from the vapor phase has come a more serious interest in developing diamond-based electronic devices. A unique combination of extreme properties makes diamond partiCularly well suited for high speed, high power, and high temperature applications. Vapor phase deposition of diamond allows large area films to be deposited, whose properties can potentially be controlled. Since the process of diamond synthesis was first realized, great progress have been made in understanding the issues important for growing diamond and fabricating electronic devices. The quality of both intrinsic and doped diamond has improved greatly to the point that viable applications are being developed. Our understanding of the properties and limitations has also improved greatly. While a number of excellent references review the general properties of diamond, this volume summarizes the great deal of literature related only to electronic properties and applications of diamond. We concentrate only on diamond; related materials such as diamond-like carbon (DLC) and other wide bandgap semiconductors are not treated here. In the first chapter Profs. C. Y. Fong and B. M. Klein discuss the band structure of single-crystal diamond and its relation to electronic properties.

Nanophotonics with Diamond and Silicon Carbide for Quantum Technologies


Nanophotonics with Diamond and Silicon Carbide for Quantum Technologies

Author: Mario Agio

language: en

Publisher: Elsevier

Release Date: 2025-04-18


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Nanophotonics with Diamond and Silicon Carbide for Quantum Technologies provides an in-depth overview of key developments in diamond and silicon carbide photonics to enable spin-photon interfaces, quantum computing, quantum imaging, and quantum sensing. Written by world experts, chapters discuss nanophotonics effects (atomic size point center properties in the materials), fabrication of photonic components and integrated photonics circuits, photonics and nanophotonics enabling quantum sensing, and quantum information and networks via spin-photon interface. This book is a valuable resource to researchers and professionals interested on the fundamentals, trends, and diamond and silicon carbide applications in the quantum technology industry. - Discusses experimental and computational methods needed to approach the fabrication and design of photonics components in diamond and silicon carbide - Describes characterization techniques to test photonics properties and the monolithic integration of atomic point defects within materials' nano- or micro-photonics cavity - Features the methodologies for the fabrication of photonics components, their integration towards wafer scale integrated photonics circuits, and nanophotonic with quantum functionalities