An Introduction to Quantum Transport in Semiconductors Book [PDF] Download

Download the fantastic book titled An Introduction to Quantum Transport in Semiconductors written by David K. Ferry, available in its entirety in both PDF and EPUB formats for online reading. This page includes a concise summary, a preview of the book cover, and detailed information about "An Introduction to Quantum Transport in Semiconductors", which was released on 14 December 2017. We suggest perusing the summary before initiating your download. This book is a top selection for enthusiasts of the Science genre.

Summary of An Introduction to Quantum Transport in Semiconductors by David K. Ferry PDF

Throughout their college career, most engineering students have done problems and studies that are basically situated in the classical world. Some may have taken quantum mechanics as their chosen field of study. This book moves beyond the basics to highlight the full quantum mechanical nature of the transport of carriers through nanoelectronic structures. The book is unique in that addresses quantum transport only in the materials that are of interest to microelectronics—semiconductors, with their variable densities and effective masses. The author develops Green’s functions starting from equilibrium Green’s functions and going through modern time-dependent approaches to non-equilibrium Green’s functions, introduces relativistic bands for graphene and topological insulators and discusses the quantum transport changes that these bands induce, and discusses applications such as weak localization and phase breaking processes, resonant tunneling diodes, single-electron tunneling, and entanglement. Furthermore, he also explains modern ensemble Monte Carlo approaches to simulation of various approaches to quantum transport and the hydrodynamic approaches to quantum transport. All in all, the book describes all approaches to quantum transport in semiconductors, thus becoming an essential textbook for advanced graduate students in electrical engineering or physics.


Detail About An Introduction to Quantum Transport in Semiconductors PDF

  • Author : David K. Ferry
  • Publisher : CRC Press
  • Genre : Science
  • Total Pages : 230 pages
  • ISBN : 1351796372
  • PDF File Size : 12,9 Mb
  • Language : English
  • Rating : 4/5 from 21 reviews

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An Introduction to Quantum Transport in Semiconductors

An Introduction to Quantum Transport in Semiconductors
  • Publisher : CRC Press
  • File Size : 54,8 Mb
  • Release Date : 14 December 2017
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Throughout their college career, most engineering students have done problems and studies that are basically situated in the classical world. Some may have taken quantum mechanics as their chosen field

Quantum Transport in Semiconductors

Quantum Transport in Semiconductors
  • Publisher : Springer Science & Business Media
  • File Size : 40,8 Mb
  • Release Date : 29 June 2013
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The majority of the chapters in this volume represent a series of lectures. that were given at a workshop on quantum transport in ultrasmall electron devices, held at San Miniato,

Quantum Transport in Submicron Devices

Quantum Transport in Submicron Devices
  • Publisher : Springer Science & Business Media
  • File Size : 30,7 Mb
  • Release Date : 12 June 2002
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The aim of this book is to resolve the problem of electron and hole transport with a coherent and consistent theory that is relevant to the understanding of transport phenomena

Theory of Electron Transport in Semiconductors

Theory of Electron Transport in Semiconductors
  • Publisher : Springer Science & Business Media
  • File Size : 53,8 Mb
  • Release Date : 05 September 2010
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This book originated out of a desire to provide students with an instrument which might lead them from knowledge of elementary classical and quantum physics to moderntheoreticaltechniques for the analysisof

Electronic Quantum Transport in Mesoscopic Semiconductor Structures

Electronic Quantum Transport in Mesoscopic Semiconductor Structures
  • Publisher : Springer Science & Business Media
  • File Size : 21,7 Mb
  • Release Date : 08 January 2004
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Opening with a brief historical account of electron transport from Ohm's law through transport in semiconductor nanostructures, this book discusses topics related to electronic quantum transport. The book is written

Quantum Transport in Semiconductor Submicron Structures

Quantum Transport in Semiconductor Submicron Structures
  • Publisher : Springer Science & Business Media
  • File Size : 36,8 Mb
  • Release Date : 06 December 2012
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The articles in this book have been selected from the lectures of a NATO Advanced Study Institute held at Bad Lauterberg (Germany) in August 1995. Internationally well-known researchers in the field

Quantum Kinetics in Transport and Optics of Semiconductors

Quantum Kinetics in Transport and Optics of Semiconductors
  • Publisher : Springer Science & Business Media
  • File Size : 24,8 Mb
  • Release Date : 10 December 2007
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The state-of-the-art of quantum transport and quantum kinetics in semiconductors, plus the latest applications, are covered in this monograph. Since the publishing of the first edition in 1996, the nonequilibrium Green

Quantum Transport

Quantum Transport
  • Publisher : Cambridge University Press
  • File Size : 23,7 Mb
  • Release Date : 16 June 2005
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This book presents the conceptual framework underlying the atomistic theory of matter, emphasizing those aspects that relate to current flow. This includes some of the most advanced concepts of non-equilibrium

Theory of Quantum Transport at Nanoscale

Theory of Quantum Transport at Nanoscale
  • Publisher : Springer
  • File Size : 50,9 Mb
  • Release Date : 08 December 2015
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This book is an introduction to a rapidly developing field of modern theoretical physics – the theory of quantum transport at nanoscale. The theoretical methods considered in the book are in

Quantum Transport in Ultrasmall Devices

Quantum Transport in Ultrasmall Devices
  • Publisher : Springer Science & Business Media
  • File Size : 40,8 Mb
  • Release Date : 06 December 2012
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The operation of semiconductor devices depends upon the use of electrical potential barriers (such as gate depletion) in controlling the carrier densities (electrons and holes) and their transport. Although a