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Presenting the contributions of more than 20 leading academic and corporate researchers from the United States and Japan, Silicon Nanoelectronics offers a comprehensive look at this emergent technology. The text includes extensive background information on the physics of silicon nanodevices and practical CMOS scaling. It considers such issues as quantum effects and ballistic transport and resonant tunneling in silicon nanotechnology. A significant amount of attention is given to the all-important silicon single electron transistors and the devices that utilize them.In offering an update of the…mehr

Produktbeschreibung
Presenting the contributions of more than 20 leading academic and corporate researchers from the United States and Japan, Silicon Nanoelectronics offers a comprehensive look at this emergent technology. The text includes extensive background information on the physics of silicon nanodevices and practical CMOS scaling. It considers such issues as quantum effects and ballistic transport and resonant tunneling in silicon nanotechnology. A significant amount of attention is given to the all-important silicon single electron transistors and the devices that utilize them.In offering an update of the current state-of-the-art in the field of silicon nanoelectronics, this volume serves well as a concise reference for students, scientists, engineers, and specialists in various fields, including electron device technology, solid-state physics, and nanotechnology.F eatures Covers the most recent developments in silicon nanoelectronics Discusses a variety of silicon nanodevices, including single-electron devices, ballistic transistors, resonant tunneling devices, silicon nanowires, as well as new materials Provides current information on SESO Memory Devices, and Few Electron Devices and Memory
Because the silicon process infrastructure is already in place and because of silicon's compatibility with current CMOS circuits, silicon nanodevices are positioned to become particularly important. Silicon Nanoelectronics examines recent developments of novel devices and materials that hold great promise for creating smaller and more powerful chips. Contributed by more than 20 leading researchers, the text offers extensive background information and considers issues such as quantum effects and ballistic transport and resonant tunneling in silicon nanotechnology. It also pays significant attention to the all-important silicon single electron transistors and the devices that utilize them.
Autorenporträt
Shunri Oda , David Ferry