Nanoelectronics and Nanosystems

Nanoelectronics and Nanosystems
Author: Karl Goser
Publsiher: Springer Science & Business Media
Total Pages: 304
Release: 2013-04-17
Genre: Technology & Engineering
ISBN: 9783662054215

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An accessible introduction for electronic engineers, computer scientists and physicists. The overview covers all aspects from underlying technologies to circuits and systems. The challenge of nanoelectronics is not only to manufacture minute structures but also to develop innovative systems for effective integration of the billions of devices. On the system level, various architectures are presented and important features of systems, such as design strategies, processing power, and reliability are discussed. Many specific technologies are presented, including molecular devices, quantum electronic devices, resonant tunnelling devices, single electron devices, superconducting devices, and even devices for DNA and quantum computing. The book also compares these devices with current silicon technologies and discusses limits of electronics and the future of nanosystems.

Nanoelectronics And Nanosystems From Transistors To Molecular And Quantum Devices

Nanoelectronics And Nanosystems  From Transistors To Molecular And Quantum Devices
Author: Goser
Publsiher: Unknown
Total Pages: 296
Release: 2005-01-01
Genre: Electronic Book
ISBN: 8181283619

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Nanoelectronics

Nanoelectronics
Author: Avik Ghosh
Publsiher: World Scientific Publishing Company
Total Pages: 524
Release: 2016-09-29
Genre: Electronic Book
ISBN: 9789813144514

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This book is aimed at senior undergraduates, graduate students and researchers interested in quantitative understanding and modeling of nanomaterial and device physics. With the rapid slow-down of semiconductor scaling that drove information technology for decades, there is a pressing need to understand and model electron flow at its fundamental molecular limits. The purpose of this book is to enable such a deconstruction needed to design the next generation memory, logic, sensor and communication elements. Through numerous case studies and topical examples relating to emerging technology, this book connects 'top down' classical device physics taught in electrical engineering classes with 'bottom up' quantum and many-body transport physics taught in physics and chemistry. The book assumes no more than a nodding acquaintance with quantum mechanics, in addition to knowledge of freshman level mathematics. Segments of this book are useful as a textbook for a course in nano-electronics.

Nanoelectronics

Nanoelectronics
Author: Mircea Dragoman,Daniela Dragoman
Publsiher: Artech House Publishers
Total Pages: 538
Release: 2009
Genre: Technology & Engineering
ISBN: UOM:39076002858418

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This revised edition provides a current, unified treatment of the research, technology, and applications fueling the rapid growth of nanoelectronics. It features numerous updates, including expanded discussions on nanomaterials, micro and nano cantilevers, and spintronics.

Nanoelectronics Physics Materials and Devices

Nanoelectronics  Physics  Materials and Devices
Author: Angsuman Sarkar,Chandan Kumar Sarkar,Arpan Deyasi,Debashis De,Arezki Benfdila
Publsiher: Elsevier
Total Pages: 550
Release: 2023-01-03
Genre: Technology & Engineering
ISBN: 9780323918336

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Approx.528 pages Approx.528 pages

Theory of Semiconductor Quantum Devices

Theory of Semiconductor Quantum Devices
Author: Fausto Rossi
Publsiher: Springer Science & Business Media
Total Pages: 382
Release: 2011-01-13
Genre: Technology & Engineering
ISBN: 9783642105562

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Primary goal of this book is to provide a cohesive description of the vast field of semiconductor quantum devices, with special emphasis on basic quantum-mechanical phenomena governing the electro-optical response of new-generation nanomaterials. The book will cover within a common language different types of optoelectronic nanodevices, including quantum-cascade laser sources and detectors, few-electron/exciton quantum devices, and semiconductor-based quantum logic gates. The distinguishing feature of the present volume is a unified microscopic treatment of quantum-transport and coherent-optics phenomena on ultrasmall space- and time-scales, as well as of their semiclassical counterparts.

Quantum Nanoelectronics

Quantum Nanoelectronics
Author: Edward L. Wolf
Publsiher: John Wiley & Sons
Total Pages: 473
Release: 2015-11-20
Genre: Technology & Engineering
ISBN: 9783527665389

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A tutorial coverage of electronic technology, starting from the basics of condensed matter and quantum physics. Experienced author Ed Wolf presents established and novel devices like Field Effect and Single Electron Transistors, and leads the reader up to applications in data storage, quantum computing, and energy harvesting. Intended to be self-contained for students with two years of calculus-based college physics, with corresponding fundamental knowledge in mathematics, computing and chemistry.

Introductory Nanoelectronics

Introductory Nanoelectronics
Author: Vinod Kumar Khanna
Publsiher: CRC Press
Total Pages: 753
Release: 2020-07-21
Genre: Science
ISBN: 9781351204651

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This introductory text develops the reader’s fundamental understanding of core principles and experimental aspects underlying the operation of nanoelectronic devices. The author makes a thorough and systematic presentation of electron transport in quantum-confined systems such as quantum dots, quantum wires, and quantum wells together with Landauer-Büttiker formalism and non-equilibrium Green’s function approach. The coverage encompasses nanofabrication techniques and characterization tools followed by a comprehensive exposition of nanoelectronic devices including resonant tunneling diodes, nanoscale MOSFETs, carbon nanotube FETs, high-electron-mobility transistors, single-electron transistors, and heterostructure optoelectronic devices. The writing throughout is simple and straightforward, with clearly drawn illustrations and extensive self-study exercises for each chapter. Introduces the basic concepts underlying the operation of nanoelectronic devices. Offers a broad overview of the field, including state-of-the-art developments. Covers the relevant quantum and solid-state physics and nanoelectronic device principles. Written in lucid language with accessible mathematical treatment. Includes extensive end-of-chapter exercises and many insightful diagrams.