Emerging Nanoelectronic Devices focuses on the future direction of semiconductor and emerging nanoscale device technology. As the dimensional scaling of CMOS approaches its limits, alternate information processing devices and microarchitectures are being explored to sustain increasing functionality
Nanoelectronic Devices
โ Scribed by Byung-Gook Park (Author); Sung Woo Hwang (Author); Young June Park (Author)
- Publisher
- Jenny Stanford Publishing
- Year
- 2012
- Leaves
- 426
- Edition
- 1
- Category
- Library
No coin nor oath required. For personal study only.
โฆ Synopsis
This book provides readers with the knowledge in fundamentals of nanoelectronic devices. The authors build the principles of nanoelectronic devices based on those of microelectronic devices wherever possible and introduce the inherently nanoelectronic principles gradually. They briefly review quantum mechanics and solid-state physics that can form
โฆ Table of Contents
Quantum Mechanics for Nanoelectronic Devices. Electron Transport and Device Physics.MOS Structure and CMOS Devices. Quantum Well Devices. Quantum Wire Devices. Quantum Dot Devices. MOSFET as the Molecular Sensor.
โฆ Subjects
Engineering & Technology;Electrical & Electronic Engineering;Electronics;Nanoscience & Nanotechnology;Physical Sciences;Physics;Applied Physics
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<p><i>Emerging Nanoelectronic Devices</i> focuses on the future direction of semiconductor and emerging nanoscale device technology. As the dimensional scaling of CMOS approaches its limits, alternate information processing devices and microarchitectures are being explored to sustain increasing func
''The book has two purposes. First, it assembles the latest research in the field of nanoelectronics device technology in one place. Second, it exposes the reader to myriad applications that nanoelectronics devices technology has enabled. The book is meant for advanced graduate research work or for
<p>The author presents all aspects, in theory and experiments, of nanoelectronic devices starting from field-effect transistors and leading to alternative device concepts such as Schottky-barrier MOSFETs and band-to-band tunnel FETs. Latest advances in Nanoelectronics, as ultralow power nanoscale de
<p>The author presents all aspects, in theory and experiments, of nanoelectronic devices starting from field-effect transistors and leading to alternative device concepts such as Schottky-barrier MOSFETs and band-to-band tunnel FETs. Latest advances in Nanoelectronics, as ultralow power nanoscale de