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Название: Advanced Nanoelectronics: Post-Silicon Materials and Devices
Автор: Muhammad Mustafa Hussain
Издательство: Wiley-VCH
ISBN: 352734358X
Год: 2018
Страниц: 288
Язык: английский
Формат: pdf (true)
Размер: 10.1 MB
Brings novel insights to a vibrant research area with high application potential—covering materials, physics, architecture, and integration aspects of future generation CMOS Technologies. Over the last four decades we have seen tremendous growth in semiconductor electronics. This growth has been fueled by the matured complementary metal oxide semiconductor (CMOS) technologies. This comprehensive book captures the novel device options in CMOS technologies that can be realized using non-silicon semiconductors. It discusses germanium, III-V materials, carbon nanotubes and graphene as semiconducting materials for three-dimensional field-effect transistors. It also covers non-conventional materials such as nanowires and nanotubes. Additionally, nanoelectromechanical switches-based mechanical relays and wide bandgap semiconductor-based terahertz electronics are reviewed as essential add-on electronics for enhanced communication and computational capabilities.
Автор: Muhammad Mustafa Hussain
Издательство: Wiley-VCH
ISBN: 352734358X
Год: 2018
Страниц: 288
Язык: английский
Формат: pdf (true)
Размер: 10.1 MB
Brings novel insights to a vibrant research area with high application potential—covering materials, physics, architecture, and integration aspects of future generation CMOS Technologies. Over the last four decades we have seen tremendous growth in semiconductor electronics. This growth has been fueled by the matured complementary metal oxide semiconductor (CMOS) technologies. This comprehensive book captures the novel device options in CMOS technologies that can be realized using non-silicon semiconductors. It discusses germanium, III-V materials, carbon nanotubes and graphene as semiconducting materials for three-dimensional field-effect transistors. It also covers non-conventional materials such as nanowires and nanotubes. Additionally, nanoelectromechanical switches-based mechanical relays and wide bandgap semiconductor-based terahertz electronics are reviewed as essential add-on electronics for enhanced communication and computational capabilities.