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Electron Transport in III-V Semiconductor Devices

Electron Transport in III-V Semiconductor Devices PDF Author: D. A. Poole
Publisher:
ISBN:
Category :
Languages : en
Pages : 0

Book Description


Electron Transport in III-V Semiconductor Devices

Electron Transport in III-V Semiconductor Devices PDF Author: D. A. Poole
Publisher:
ISBN:
Category :
Languages : en
Pages : 0

Book Description


Monte Carlo Studies of the Electron Transport in III-V Semiconductors and Semiconductor Devices

Monte Carlo Studies of the Electron Transport in III-V Semiconductors and Semiconductor Devices PDF Author: Charles Kenneth Williams
Publisher:
ISBN:
Category :
Languages : en
Pages : 328

Book Description


Low Temperature Electron Transport in III-V Semiconductor Devices

Low Temperature Electron Transport in III-V Semiconductor Devices PDF Author: Daniel Mace
Publisher:
ISBN:
Category :
Languages : en
Pages : 0

Book Description


Hot electron transport in nanometer scale grated ternary III - V semiconductor devices

Hot electron transport in nanometer scale grated ternary III - V semiconductor devices PDF Author: Abdul Azeez Sulaiman al-Omar
Publisher:
ISBN:
Category :
Languages : en
Pages : 370

Book Description


Hot Electron Transport in Nanometer Scale Graded Ternary III-V Semiconductor Devices

Hot Electron Transport in Nanometer Scale Graded Ternary III-V Semiconductor Devices PDF Author: Abdul-Azeez Sulaiman Al-Omar
Publisher:
ISBN:
Category : Electron transport
Languages : en
Pages : 754

Book Description


Electron Transport Phenomena in Semiconductors

Electron Transport Phenomena in Semiconductors PDF Author: B. M. Askerov
Publisher: World Scientific
ISBN: 9789810212834
Category : Technology & Engineering
Languages : en
Pages : 416

Book Description
This book contains the first systematic and detailed exposition of the linear theory of the stationary electron transport phenomena in semiconductors. Arbitrary isotropic and anisotropic nonparabolic bands as well as p-Ge-type bands are considered. Phonon drag effect are taken account of in an arbitrary nonquantizing magnetic field. Scattering theory is discussed in detail with account taken of the Bloch wave functions effect. Transport phenomena in the quantizing magnetic field are studied as well as the size effects in thin films. Band structures of the semiconductors and semiconductor compounds of interest are also considered.The main part of the book deals with the three important problems: charge carrier statistics in a semiconductor, classical and quantum theory of the electron transport phenomena. All the theoretical results considered as well as the validity conditions are presented in the form which may be directly used to interpret experimental data.

Theory of Electron Transport in Semiconductors

Theory of Electron Transport in Semiconductors PDF Author: Carlo Jacoboni
Publisher: Springer Science & Business Media
ISBN: 3642105866
Category : Science
Languages : en
Pages : 590

Book Description
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 electrontransport in semiconductors. The book is basically a textbook for students of physics, material science, and electronics. Rather than a monograph on detailed advanced research in a speci?c area, it intends to introduce the reader to the fascinating ?eld of electron dynamics in semiconductors, a ?eld that, through its applications to electronics, greatly contributed to the transformationof all our lives in the second half of the twentieth century, and continues to provide surprises and new challenges. The ?eld is so extensive that it has been necessary to leave aside many subjects, while others could be dealt with only in terms of their basic principles. The book is divided into ?ve major parts. Part I moves from a survey of the fundamentals of classical and quantum physics to a brief review of basic semiconductor physics. Its purpose is to establish a common platform of language and symbols, and to make the entire treatment, as far as pos- ble, self-contained. Parts II and III, respectively, develop transport theory in bulk semiconductors in semiclassical and quantum frames. Part IV is devoted to semiconductor structures, including devices and mesoscopic coherent s- tems. Finally, Part V develops the basic theoretical tools of transport theory within the modern nonequilibrium Green-function formulation, starting from an introduction to second-quantization formalism.

Electronic Transport in III-V Semiconductors and Semiconductor Devices

Electronic Transport in III-V Semiconductors and Semiconductor Devices PDF Author: D. J. Newson
Publisher:
ISBN:
Category :
Languages : en
Pages : 0

Book Description


Advanced Physics of Electron Transport in Semiconductors and Nanostructures

Advanced Physics of Electron Transport in Semiconductors and Nanostructures PDF Author: Massimo V. Fischetti
Publisher: Springer
ISBN: 3319011014
Category : Technology & Engineering
Languages : en
Pages : 481

Book Description
This textbook is aimed at second-year graduate students in Physics, Electrical Engineering, or Materials Science. It presents a rigorous introduction to electronic transport in solids, especially at the nanometer scale.Understanding electronic transport in solids requires some basic knowledge of Hamiltonian Classical Mechanics, Quantum Mechanics, Condensed Matter Theory, and Statistical Mechanics. Hence, this book discusses those sub-topics which are required to deal with electronic transport in a single, self-contained course. This will be useful for students who intend to work in academia or the nano/ micro-electronics industry.Further topics covered include: the theory of energy bands in crystals, of second quantization and elementary excitations in solids, of the dielectric properties of semiconductors with an emphasis on dielectric screening and coupled interfacial modes, of electron scattering with phonons, plasmons, electrons and photons, of the derivation of transport equations in semiconductors and semiconductor nanostructures somewhat at the quantum level, but mainly at the semi-classical level. The text presents examples relevant to current research, thus not only about Si, but also about III-V compound semiconductors, nanowires, graphene and graphene nanoribbons. In particular, the text gives major emphasis to plane-wave methods applied to the electronic structure of solids, both DFT and empirical pseudopotentials, always paying attention to their effects on electronic transport and its numerical treatment. The core of the text is electronic transport, with ample discussions of the transport equations derived both in the quantum picture (the Liouville-von Neumann equation) and semi-classically (the Boltzmann transport equation, BTE). An advanced chapter, Chapter 18, is strictly related to the ‘tricky’ transition from the time-reversible Liouville-von Neumann equation to the time-irreversible Green’s functions, to the density-matrix formalism and, classically, to the Boltzmann transport equation. Finally, several methods for solving the BTE are also reviewed, including the method of moments, iterative methods, direct matrix inversion, Cellular Automata and Monte Carlo. Four appendices complete the text.

Balance Equation Approach to Electron Transport In Semiconductors

Balance Equation Approach to Electron Transport In Semiconductors PDF Author: Xiaolin Lei
Publisher: World Scientific
ISBN: 9812819029
Category : Technology & Engineering
Languages : en
Pages : 657

Book Description
This book presents a systematic, comprehensive and up-to-date description of the physical basis of the balance equation transport theory and its applications in bulk and low-dimensional semiconductors. The different aspects of the balance equation method, originally proposed by C S Ting and the author of the present book, were reviewed in the volume entitled Physics of Hot Electron Transport in Semiconductors (edited by C S Ting, World Scientific, 1992). Since then, this method has been extensively developed and applied to various new fields, such as transport in nonparabolic systems, spatially nonuniform systems and semiconductor devices, miniband conduction of superlattices, hot-electron magnetotransport, effects of impact ionization in transport, microwave-induced magnetoresistance oscillation, radiation-driven transport and electron cooling, etc. Due to its simplicity and effectiveness, the balance equation approach has become a useful tool to tackle the many transport phenomena in semiconductors, and provides a reliable basis for developing theories, modeling devices and explaining experiments.The book may be used as a textbook by graduate students. It will also benefit researchers in the field by helping them grasp the basic principles and techniques of the method, without having to spend a lot of time digging out the information from widespread literature covering a period of 30 years.