Детальная информация

Название: Nanoelectronic device applications handbook
Другие авторы: Morris James E.; Iniewski Krzysztof
Выходные сведения: Boca Raton: CRC Press, 2013
Коллекция: Электронные книги зарубежных издательств; Общая коллекция
Тематика: Наноструктурные материалы; Микроэлектроника; Электронные схемы
УДК: 620.22-022.53; 621.382
Тип документа: Другой
Тип файла: Другой
Язык: Английский
Права доступа: Доступ из локальной сети ФБ СПбПУ (чтение, печать, копирование)
Ключ записи: RU\SPSTU\edoc\52478

Разрешенные действия: Посмотреть

Аннотация

Nanoelectronic Device Applications Handbook gives a comprehensive snapshot of the state of the art in nanodevices for nanoelectronics applications. Combining breadth and depth, the book includes 68 chapters on topics that range from nano-scaled complementary metal–oxide–semiconductor (CMOS) devices through recent developments in nano capacitors and AlGaAs/GaAs devices. The contributors are world-renowned experts from academia and industry from around the globe. The handbook explores current research into potentially disruptive technologies for a post-CMOS world. These include: Nanoscale advances in current MOSFET/CMOS technology Nano capacitors for applications such as electronics packaging and humidity sensors Single electron transistors and other electron tunneling devices Quantum cellular automata and nanomagnetic logic Memristors as switching devices and for memory Graphene preparation, properties, and devices Carbon nanotubes (CNTs), both single CNT and random network Other CNT applications such as terahertz, sensors, interconnects, and capacitors Nano system architectures for reliability Nanowire device fabrication and applications Nanowire transistors Nanodevices for spintronics The book closes with a call for a new generation of simulation tools to handle nanoscale mechanisms in realistic nanodevice geometries. This timely handbook offers a wealth of insights into the application of nanoelectronics. It is an invaluable reference and source of ideas for anyone working in the rapidly expanding field of nanoelectronics.

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