Nanoscale Devices

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Nanoscale Electronic Devices and Their Applications

Author : Khurshed Ahmad Shah,Farooq Ahmad Khanday
Publisher : CRC Press
Page : 237 pages
File Size : 46,6 Mb
Release : 2020-08-03
Category : Science
ISBN : 9781000163520

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Nanoscale Electronic Devices and Their Applications by Khurshed Ahmad Shah,Farooq Ahmad Khanday Pdf

Nanoscale Electronic Devices and Their Applications helps readers acquire a thorough understanding of the fundamentals of solids at the nanoscale level in addition to their applications including operation and properties of recent nanoscale devices. This book includes seven chapters that give an overview of electrons in solids, carbon nanotube devices and their applications, doping techniques, construction and operational details of channel-engineered MOSFETs, and spintronic devices and their applications. Structural and operational features of phase-change memory (PCM), memristor, and resistive random-access memory (ReRAM) are also discussed. In addition, some applications of these phase-change devices to logic designs have been presented. Aimed at senior undergraduate students in electrical engineering, micro-electronics engineering, physics, and device physics, this book: Covers a wide area of nanoscale devices while explaining the fundamental physics in these devices Reviews information on CNT two- and three-probe devices, spintronic devices, CNT interconnects, CNT memories, and NDR in CNT FETs Discusses spin-controlled devices and their applications, multi-material devices, and gates in addition to phase-change devices Includes rigorous mathematical derivations of the semiconductor physics Illustrates major concepts thorough discussions and various diagrams

Nanoscale Devices

Author : Brajesh Kumar Kaushik
Publisher : CRC Press
Page : 410 pages
File Size : 53,8 Mb
Release : 2018-11-16
Category : Science
ISBN : 9781351670210

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Nanoscale Devices by Brajesh Kumar Kaushik Pdf

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. . Provides a platform for modeling and analysis of state-of-the-art devices in nanoscale regime, reviews issues related to optimizing the sub-nanometer device performance and addresses simulation aspect and/or fabrication process of devices Also, includes design problems at the end of each chapter

Nanoscale Devices - Fundamentals and Applications

Author : Rudolf Gross,Anatolie Sidorenko,Lenar Tagirov
Publisher : Springer Science & Business Media
Page : 399 pages
File Size : 49,7 Mb
Release : 2007-05-16
Category : Technology & Engineering
ISBN : 9781402051074

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Nanoscale Devices - Fundamentals and Applications by Rudolf Gross,Anatolie Sidorenko,Lenar Tagirov Pdf

This book collects papers on the fundamentals and applications of nanoscale devices, first presented at the NATO Advanced Research Workshop on Nanoscale Devices – Fundamentals and Applications held in Kishinev, Moldova, in September 2004. The focus is on the synthesis and characterization of nanoscale magnetic materials; fundamental physics and materials aspects of solid-state nanostructures; development of novel device concepts and design principles for nanoscale devices; and on applications in electronics with emphasis on defence against the threat of terrorism.

Spintronics in Nanoscale Devices

Author : Eric R. Hedin,Yong S. Joe
Publisher : CRC Press
Page : 223 pages
File Size : 52,9 Mb
Release : 2016-04-19
Category : Science
ISBN : 9789814411707

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Spintronics in Nanoscale Devices by Eric R. Hedin,Yong S. Joe Pdf

By exploiting the novel properties of quantum dots and nanoscale Aharonov–Bohm rings together with the electronic and magnetic properties of various semiconductor materials and graphene, researchers have conducted numerous theoretical and computational modeling studies and experimental tests that show promising behavior for spintronics applications. Spin polarization and spin-filtering capabilities and the ability to manipulate the electron spin state through external magnetic or electric fields have demonstrated the promise of workable nanoscale devices for computing and memory applications. This book provides researchers investigating this cutting-edge field with detailed background descriptions of spin-based effects and devices and their theoretical analysis in nanoelectronic circuits.

Nanopatterning and Nanoscale Devices for Biological Applications

Author : Seila Šelimović
Publisher : CRC Press
Page : 417 pages
File Size : 43,9 Mb
Release : 2017-12-19
Category : Medical
ISBN : 9781466586321

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Nanopatterning and Nanoscale Devices for Biological Applications by Seila Šelimović Pdf

Nanoscale techniques and devices have had an explosive influence on research in life sciences and bioengineering. Reflecting this influence, Nanopatterning and Nanoscale Devices for Biological Applications provides valuable insight into the latest developments in nanoscale technologies for the study of biological systems. Written and edited by experts in the field, this first-of-its-kind collection of topics: Covers device fabrication methods targeting the substrate on the nanoscale through surface modification Explores the generation of nanostructured biointerfaces and bioelectronics elements Examines microfluidically generated droplets as reactors enabling nanoscale sample preparation and analysis Gives an overview of key biosensors and integrated devices with nanoscale functionalities Discusses the biological applications of nanoscale devices, including a review of nanotechnology in tissue engineering Readers gain a deep understanding of the cutting-edge applications of nanotechnologies in biological engineering, and learn how to apply the relevant scientific concepts to their own research. Nanopatterning and Nanoscale Devices for Biological Applications is the definitive reference for researchers in engineering, biology, and biomedicine, and for anyone exploring the newest trends in this innovative field.

Modeling Self-Heating Effects in Nanoscale Devices

Author : Katerina Raleva,Abdul Rawoof Sheik,Dragica Vasileska,Stephen M. Goodnick
Publisher : Morgan & Claypool Publishers
Page : 108 pages
File Size : 54,9 Mb
Release : 2017-09-13
Category : Science
ISBN : 9781681741239

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Modeling Self-Heating Effects in Nanoscale Devices by Katerina Raleva,Abdul Rawoof Sheik,Dragica Vasileska,Stephen M. Goodnick Pdf

It is generally acknowledged that modeling and simulation are preferred alternatives to trial and error approaches to semiconductor fabrication in the present environment, where the cost of process runs and associated mask sets is increasing exponentially with successive technology nodes. Hence, accurate physical device simulation tools are essential to accurately predict device and circuit performance. Accurate thermal modelling and the design of microelectronic devices and thin film structures at the micro- and nanoscales poses a challenge to electrical engineers who are less familiar with the basic concepts and ideas in sub-continuum heat transport. This book aims to bridge that gap. Efficient heat removal methods are necessary to increase device performance and device reliability. The authors provide readers with a combination of nanoscale experimental techniques and accurate modelling methods that must be employed in order to determine a device's temperature profile.

Theoretical Foundations of Nanoscale Quantum Devices

Author : Malin Premaratne,Govind P. Agrawal
Publisher : Cambridge University Press
Page : 299 pages
File Size : 52,7 Mb
Release : 2021-01-07
Category : Science
ISBN : 9781108475662

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Theoretical Foundations of Nanoscale Quantum Devices by Malin Premaratne,Govind P. Agrawal Pdf

This self-contained text describes the underlying theory and approximate quantum models of real nanodevices for nanotechnology applications.

Nanoscale Device Physics

Author : Sandip Tiwari
Publisher : Oxford University Press
Page : 682 pages
File Size : 40,5 Mb
Release : 2017-03-31
Category : Science
ISBN : 9780191078040

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Nanoscale Device Physics by Sandip Tiwari Pdf

Nanoscale devices differ from larger microscale devices because they depend on the physical phenomena and effects that are central to their operation. This textbook illuminates the behavior of nanoscale devices by connecting them to the electronic, as well as magnetic, optical and mechanical properties, which fundamentally affect nanoscale devices in fascinating ways. Their small size means that an understanding of the phenomena measured is even more important, as their effects are so dominant and the changes in scale of underlying energetics and response are significant. Examples of these include classical effects such as single electron effects, quantum effects such as the states accessible as well as their properties; ensemble effects ranging from consequences of the laws of numbers to changes in properties arising from different magnitudes of the interactions, and others. These interactions, with the limits on size, make their physical behavior interesting, important and useful. The collection of four textbooks in the Electroscience Series culminates in a comprehensive understanding of nanoscale devices — electronic, magnetic, mechanical and optical — in the 4th volume. The series builds up to this last subject with volumes devoted to underlying semiconductor and solid-state physics.

Noise in Nanoscale Semiconductor Devices

Author : Tibor Grasser
Publisher : Springer Nature
Page : 724 pages
File Size : 54,6 Mb
Release : 2020-04-26
Category : Technology & Engineering
ISBN : 9783030375003

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Noise in Nanoscale Semiconductor Devices by Tibor Grasser Pdf

This book summarizes the state-of-the-art, regarding noise in nanometer semiconductor devices. Readers will benefit from this leading-edge research, aimed at increasing reliability based on physical microscopic models. Authors discuss the most recent developments in the understanding of point defects, e.g. via ab initio calculations or intricate measurements, which have paved the way to more physics-based noise models which are applicable to a wider range of materials and features, e.g. III-V materials, 2D materials, and multi-state defects. Describes the state-of-the-art, regarding noise in nanometer semiconductor devices; Enables readers to design more reliable semiconductor devices; Offers the most up-to-date information on point defects, based on physical microscopic models.

Modeling Self-Heating Effects in Nanoscale Devices

Author : Katerina Raleva,Abdul Rawoof Sheik,Dragica Vasileska,Stephen M. Goodnick
Publisher : Morgan & Claypool Publishers
Page : 119 pages
File Size : 52,5 Mb
Release : 2017-09-13
Category : Science
ISBN : 9781681741871

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Modeling Self-Heating Effects in Nanoscale Devices by Katerina Raleva,Abdul Rawoof Sheik,Dragica Vasileska,Stephen M. Goodnick Pdf

It is generally acknowledged that modeling and simulation are preferred alternatives to trial and error approaches to semiconductor fabrication in the present environment, where the cost of process runs and associated mask sets is increasing exponentially with successive technology nodes. Hence, accurate physical device simulation tools are essential to accurately predict device and circuit performance. Accurate thermal modelling and the design of microelectronic devices and thin film structures at the micro- and nanoscales poses a challenge to electrical engineers who are less familiar with the basic concepts and ideas in sub-continuum heat transport. This book aims to bridge that gap. Efficient heat removal methods are necessary to increase device performance and device reliability. The authors provide readers with a combination of nanoscale experimental techniques and accurate modelling methods that must be employed in order to determine a device's temperature profile.

Advanced Experimental Methods for Noise Research in Nanoscale Electronic Devices

Author : Josef Sikula,Mikhail Efimovich Levinshteĭn
Publisher : Springer Science & Business Media
Page : 382 pages
File Size : 41,6 Mb
Release : 2004-07-08
Category : Mathematics
ISBN : 1402021682

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Advanced Experimental Methods for Noise Research in Nanoscale Electronic Devices by Josef Sikula,Mikhail Efimovich Levinshteĭn Pdf

Proceedings of the NATO Advanced Research Workshop, held in Brno, Czech Republic, 14-16 August 2003

Micro- and Nanoscale Fluid Mechanics

Author : Brian J. Kirby
Publisher : Cambridge University Press
Page : 536 pages
File Size : 51,5 Mb
Release : 2010-07-26
Category : Technology & Engineering
ISBN : 9781139489836

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Micro- and Nanoscale Fluid Mechanics by Brian J. Kirby Pdf

This text focuses on the physics of fluid transport in micro- and nanofabricated liquid-phase systems, with consideration of gas bubbles, solid particles, and macromolecules. This text was designed with the goal of bringing together several areas that are often taught separately - namely, fluid mechanics, electrodynamics, and interfacial chemistry and electrochemistry - with a focused goal of preparing the modern microfluidics researcher to analyse and model continuum fluid mechanical systems encountered when working with micro- and nanofabricated devices. This text serves as a useful reference for practising researchers but is designed primarily for classroom instruction. Worked sample problems are included throughout to assist the student, and exercises at the end of each chapter help facilitate class learning.

Low-Dimensional Nanoscale Electronic and Photonic Devices 4

Author : L.-J. Chou
Publisher : The Electrochemical Society
Page : 103 pages
File Size : 42,5 Mb
Release : 2010-10
Category : Science
ISBN : 9781566778282

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Low-Dimensional Nanoscale Electronic and Photonic Devices 4 by L.-J. Chou Pdf

The papers included in this issue of ECS Transactions were originally presented in the symposium ¿Low-Dimensional Nanoscale Electronic and Photonic Devices 4¿, held during the 218th meeting of The Electrochemical Society, in Las Vegas, Nevada from October 10 to 15, 2010.

Stress and Strain Engineering at Nanoscale in Semiconductor Devices

Author : Chinmay K. Maiti
Publisher : CRC Press
Page : 275 pages
File Size : 49,5 Mb
Release : 2021-06-29
Category : Science
ISBN : 9781000404937

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Stress and Strain Engineering at Nanoscale in Semiconductor Devices by Chinmay K. Maiti Pdf

Anticipating a limit to the continuous miniaturization (More-Moore), intense research efforts are being made to co-integrate various functionalities (More-than-Moore) in a single chip. Currently, strain engineering is the main technique used to enhance the performance of advanced semiconductor devices. Written from an engineering applications standpoint, this book encompasses broad areas of semiconductor devices involving the design, simulation, and analysis of Si, heterostructure silicongermanium (SiGe), and III-N compound semiconductor devices. The book provides the background and physical insight needed to understand the new and future developments in the technology CAD (TCAD) design at the nanoscale. Features Covers stressstrain engineering in semiconductor devices, such as FinFETs and III-V Nitride-based devices Includes comprehensive mobility model for strained substrates in global and local strain techniques and their implementation in device simulations Explains the development of strain/stress relationships and their effects on the band structures of strained substrates Uses design of experiments to find the optimum process conditions Illustrates the use of TCAD for modeling strain-engineered FinFETs for DC and AC performance predictions This book is for graduate students and researchers studying solid-state devices and materials, microelectronics, systems and controls, power electronics, nanomaterials, and electronic materials and devices.

Advances in Neuromorphic Hardware Exploiting Emerging Nanoscale Devices

Author : Manan Suri
Publisher : Springer
Page : 210 pages
File Size : 51,9 Mb
Release : 2017-01-21
Category : Technology & Engineering
ISBN : 9788132237037

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Advances in Neuromorphic Hardware Exploiting Emerging Nanoscale Devices by Manan Suri Pdf

This book covers all major aspects of cutting-edge research in the field of neuromorphic hardware engineering involving emerging nanoscale devices. Special emphasis is given to leading works in hybrid low-power CMOS-Nanodevice design. The book offers readers a bidirectional (top-down and bottom-up) perspective on designing efficient bio-inspired hardware. At the nanodevice level, it focuses on various flavors of emerging resistive memory (RRAM) technology. At the algorithm level, it addresses optimized implementations of supervised and stochastic learning paradigms such as: spike-time-dependent plasticity (STDP), long-term potentiation (LTP), long-term depression (LTD), extreme learning machines (ELM) and early adoptions of restricted Boltzmann machines (RBM) to name a few. The contributions discuss system-level power/energy/parasitic trade-offs, and complex real-world applications. The book is suited for both advanced researchers and students interested in the field.