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Micro-and Nanoelectronics: Emerging Device Challenges and Solutions

✍ Scribed by Brozek, Tomasz


Publisher
Academic Press, , CRC Press
Year
2014
Tongue
English
Leaves
384
Series
Devices, Circuits, & Systems
Category
Library

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✦ Synopsis


Micro- and Nanoelectronics: Emerging Device Challenges and Solutions presents a comprehensive overview of the current state of the art of micro- and nanoelectronics, covering the field from fundamental science and material properties to novel ways of making nanodevices. Containing contributions from experts in both industry and academia, this cutting-edge text:

  • Discusses emerging silicon devices for CMOS technologies, fully depleted device architectures, characteristics, and scaling
  • Explains the specifics of silicon compound devices (SiGe, SiC) and their unique properties
  • Explores various options for post-CMOS nanoelectronics, such as spintronic devices and nanoionic switches
  • Describes the latest developments in carbon nanotubes, iii-v devices structures, and more


Micro- and Nanoelectronics: Emerging Device Challenges and Solutions provides an excellent representation of a complex engineering field, examining emerging materials and device architecture alternatives with the potential to shape the future of nanotechnology.

✦ Table of Contents


Content: Front Cover
Contents
Preface
Editor
Contributors
Chapter 1: SiGe BiCMOS Technology and Devices
Chapter 2: Si-Ge Interdiffusion, Dopant Diffusion, and Segregation in SiGe- and SiGe:C-Based Devices
Chapter 3: SiC MOS Devices : Nitrogen Passivation of Near-Interface Defects
Chapter 4: Fully Depleted Devices : FDSOI and FinFET
Chapter 5: Fully Depleted SOI Technology Overview
Chapter 6: FinFETs : Designing for New Logic Technology
Chapter 7: Reliability Issues in Planar and Nonplanar (FinFET) Device Architectures
Chapter 8: High-Mobility Channels. Chapter 9: 2-D InAs XOI FETs : Fabrication and Device PhysicsChapter 10: Beyond-CMOS Devices
Chapter 11: Stateful STT-MRAM-Based Logic for Beyond-Von Neumann Computing
Chapter 12: Four-State Hybrid Spintronics-Straintronics for Ultra-Low Power Computing
Chapter 13: Nanoionic Switches as Post-CMOS Devices for Neuromorphic Electronics
Chapter 14: Physics-Based Compact Graphene Device Modeling
Chapter 15: Carbon Nanotube Vertical Interconnects : Prospects and Challenges
Chapter 16: Graphene Nanosheet as Ultrathin Barrier
Back Cover.


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