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Kaushik B.K. (ed.) Nanoscale Devices: Physics, Modeling, and Their Application

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Kaushik B.K. (ed.) Nanoscale Devices: Physics, Modeling, and Their Application
CRC Press, Taylor & Francis Group, 2019. — 453 p. — ISBN: 1138060348.
The primary aim of this book is to discuss various aspects of nanoscale device design and their applications including transport mechanism, modeling, and circuit applications. Furthermore, the book develops a strong foundation to understand the need for moving from conventional MOSFET to novel devices, including, how the device physics and transport phenomenon changes with reduction in the device size to a nanoscale regime. Details about the simulation technique and/or fabrication process flow of the various nanoscale devices is included along with simulated results of device performance parameters. The numerical and theoretical methods are used to describe the related concepts.
Nanoscale Transistors
Simulation of Nanoscale Transistors from Quantum and Multiphysics Perspective
Variability in Nanoscale Technology and EδDC MOS Transistor
Effect of Ground Plane and Strained Silicon on Nanoscale FET Devices
Novel MOSFET Structures
U-Shaped Gate Trench Metal Oxide Semiconductor Field Effect Transistor: Structures and Characteristics
Operational Characteristics of Vertically Diffused Metal Oxide Semiconductor Field Effect Transistor
Modeling of Double-Gate MOSFETs
Modeling of Tunnel FETs
TFETs for Analog Applications
Dual Metal–Double Gate Doping-Less TFET: Design and Investigations
Graphene and Carbon Nanotube Transistors and Applications
Modeling of Graphene Plasmonic Terahertz Devices
Analysis of CNTFET for SRAM Cell Design
Design of Ternary Logic Circuits Using CNFETs
Modeling of Emerging Non-Silicon Transistors
Different Analytical Models for Organic Thin-Film Transistors: Overview and Outlook
A Fundamental Overview of High Electron Mobility Transistor and Its Applications
Emerging Nonvolatile Memory Devices and Applications
Spintronic-Based Memory and Logic
Fundamentals, Modeling, and Application of Magnetic Tunnel Junctions
RRAM Devices: Underlying Physics, SPICE Modeling, and Circuit Applications
Evaluation of Nanoscale Memristor Device for Analog and Digital Application
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