Physics and Applications of CVD Diamond
(Sprache: Englisch)
Leading scientists report on why and how diamond can be optimized for applications in bioelectronic and electronics, covering growth techniques, doping mechanisms, superconductivity, and excitonic properties, plus applications in quantum electronics, biosensors and SAWs.
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Leading scientists report on why and how diamond can be optimized for applications in bioelectronic and electronics, covering growth techniques, doping mechanisms, superconductivity, and excitonic properties, plus applications in quantum electronics, biosensors and SAWs.
Klappentext zu „Physics and Applications of CVD Diamond “
Here, leading scientists report on why and how diamond can be optimized for applications in bioelectronic and electronics. They cover such topics as growth techniques, new and conventional doping mechanisms, superconductivity in diamond, and excitonic properties, while application aspects include quantum electronics at room temperature, biosensors as well as diamond nanocantilevers and SAWs.Written in a review style to make the topic accessible for a wider community of scientists working in interdisciplinary fields with backgrounds in physics, chemistry, biology and engineering, this is essential reading for everyone working in environments that involve conventional electronics, biotechnology, quantum computing, quantum cryptography, superconductivity and light emission from highly excited excitonic systems.
Inhaltsverzeichnis zu „Physics and Applications of CVD Diamond “
Marshall Stoneham: Thinking about diamondOlivier Williams, Milos Nesladek: Growth and properties of nanocrystalline diamond FilmsTokuyuki Teraji: Chemical Vapor Deposition of Homoepitaxial Diamond FilmsYutaka Anado, Atsuhito Sawabe: Heteroepitaxy of diamondC. E. Nebel, B. Rezek, D. Shin, H. Watanabe: Surface electronic properties of H-terminated diamond in contact with electrolytesShin, B. Rezek, C.E. Nebel: Photo- and electrochemical bonding of DNA to single crystalline CVD diamondVincent Mortet, Ken Haenen, Oliver Williams: Diamond: Acoustic wave filters and sensors applicationsJonathan Goos: Defects and dopants in diamondSatoshi Koizumi, Mariko Suzuki, Julien Pernot: n-Type doping of diamond: growth, electrical transport and devicesJelezko, J. Wrachtrup: Single defect centers in diamondHideyo Okushi, Hideyuki Watanabe, Satoshi Yamasaki, Shokichi Kanno: Emission properties from dense exciton gases in diamondHeinz Pernegger: High Mobility Diamonds and Particle DetectorsEtienne Bustarret: Superconducting diamond
Autoren-Porträt
Satoshi Koizumi is Senior Researcher at the National Institute for Materials Science, Japan. As a member of the Super Diamond Group he is working on synthesis and characterization of diamond and cubic boron nitride (cBN), both high potential materials for electronic devices.Christoph Nebel is Team Leader at the Diamond Research Center oft the National Institute of Advanced Industrial Science and Technology (AIST), Japan. His research work concentrates on characterization and development of nano-structured multi-array bio-sensors and field emission devices, both based on diamond. After owning positions at the Xerox Research Laboratories, Palo Alto/USA, and the Walter Schottky Insitute at the Technical University of Munich/Germany, he moved to Japan to continue his research on diamond.
Milos Nesladek is Professor at the University of Hasselt in Belgium and Senior Researcher at the Saclay Research Center of the Atomic Energy Commissariat (CEA), France. His main interests include PE CVD growth, optical characterisation and defect spectroscopy of diamond films and novel electronic materials.
Bibliographische Angaben
- 2008, XII, 362 Seiten, 2 farbige Abbildungen, 205 Schwarz-Weiß-Abbildungen, Maße: 17,9 x 24,5 cm, Gebunden, Englisch
- Herausgegeben: Satoshi Koizumi, Christoph Nebel, Milos Nesladek
- Verlag: Wiley-VCH
- ISBN-10: 3527408010
- ISBN-13: 9783527408016
- Erscheinungsdatum: 20.08.2008
Sprache:
Englisch
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