Theory Of Transport Properties Of Semiconductor Nanostructures
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Author |
: Eckehard Schöll |
Publisher |
: Springer Science & Business Media |
Total Pages |
: 394 |
Release |
: 2013-11-27 |
ISBN-10 |
: 9781461558071 |
ISBN-13 |
: 1461558077 |
Rating |
: 4/5 (71 Downloads) |
Synopsis Theory of Transport Properties of Semiconductor Nanostructures by : Eckehard Schöll
Recent advances in the fabrication of semiconductors have created almost un limited possibilities to design structures on a nanometre scale with extraordinary electronic and optoelectronic properties. The theoretical understanding of elec trical transport in such nanostructures is of utmost importance for future device applications. This represents a challenging issue of today's basic research since it requires advanced theoretical techniques to cope with the quantum limit of charge transport, ultrafast carrier dynamics and strongly nonlinear high-field ef fects. This book, which appears in the electronic materials series, presents an over view of the theoretical background and recent developments in the theory of electrical transport in semiconductor nanostructures. It contains 11 chapters which are written by experts in their fields. Starting with a tutorial introduction to the subject in Chapter 1, it proceeds to present different approaches to transport theory. The semiclassical Boltzmann transport equation is in the centre of the next three chapters. Hydrodynamic moment equations (Chapter 2), Monte Carlo techniques (Chapter 3) and the cellular au tomaton approach (Chapter 4) are introduced and illustrated with applications to nanometre structures and device simulation. A full quantum-transport theory covering the Kubo formalism and nonequilibrium Green's functions (Chapter 5) as well as the density matrix theory (Chapter 6) is then presented.
Author |
: Thomas Ihn |
Publisher |
: Oxford University Press |
Total Pages |
: 569 |
Release |
: 2010 |
ISBN-10 |
: 9780199534425 |
ISBN-13 |
: 019953442X |
Rating |
: 4/5 (25 Downloads) |
Synopsis Semiconductor Nanostructures by : Thomas Ihn
This introduction to the physics of semiconductor nanostructures and their transport properties emphasizes five fundamental transport phenomena: quantized conductance, tunnelling transport, the Aharonov-Bohm effect, the quantum Hall effect and the Coulomb blockade effect.
Author |
: Giovanni Agostini |
Publisher |
: Elsevier |
Total Pages |
: 501 |
Release |
: 2011-08-11 |
ISBN-10 |
: 9780080558158 |
ISBN-13 |
: 0080558151 |
Rating |
: 4/5 (58 Downloads) |
Synopsis Characterization of Semiconductor Heterostructures and Nanostructures by : Giovanni Agostini
In the last couple of decades, high-performance electronic and optoelectronic devices based on semiconductor heterostructures have been required to obtain increasingly strict and well-defined performances, needing a detailed control, at the atomic level, of the structural composition of the buried interfaces. This goal has been achieved by an improvement of the epitaxial growth techniques and by the parallel use of increasingly sophisticated characterization techniques and of refined theoretical models based on ab initio approaches. This book deals with description of both characterization techniques and theoretical models needed to understand and predict the structural and electronic properties of semiconductor heterostructures and nanostructures. - Comprehensive collection of the most powerful characterization techniques for semiconductor heterostructures and nanostructures - Most of the chapters are authored by scientists that are among the top 10 worldwide in publication ranking of the specific field - Each chapter starts with a didactic introduction on the technique - The second part of each chapter deals with a selection of top examples highlighting the power of the specific technique to analyze the properties of semiconductors
Author |
: Carlo Jacoboni |
Publisher |
: Springer Science & Business Media |
Total Pages |
: 590 |
Release |
: 2010-09-05 |
ISBN-10 |
: 9783642105869 |
ISBN-13 |
: 3642105866 |
Rating |
: 4/5 (69 Downloads) |
Synopsis Theory of Electron Transport in Semiconductors by : Carlo Jacoboni
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.
Author |
: Massimo V. Fischetti |
Publisher |
: Springer |
Total Pages |
: 481 |
Release |
: 2016-05-20 |
ISBN-10 |
: 9783319011011 |
ISBN-13 |
: 3319011014 |
Rating |
: 4/5 (11 Downloads) |
Synopsis Advanced Physics of Electron Transport in Semiconductors and Nanostructures by : Massimo V. Fischetti
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.
Author |
: Christophe Jean Delerue |
Publisher |
: Springer Science & Business Media |
Total Pages |
: 313 |
Release |
: 2013-06-29 |
ISBN-10 |
: 9783662089033 |
ISBN-13 |
: 3662089033 |
Rating |
: 4/5 (33 Downloads) |
Synopsis Nanostructures by : Christophe Jean Delerue
Provides the theoretical background needed by physicists, engineers and students to simulate nano-devices, semiconductor quantum dots and molecular devices. It presents in a unified way the theoretical concepts, the more recent semi-empirical and ab initio methods, and their application to experiments. The topics include quantum confinement, dielectric and optical properties, non-radiative processes, defects and impurities, and quantum transport. This guidebook not only provides newcomers with an accessible overview (requiring only basic knowledge of quantum mechanics and solid-state physics) but also provides active researchers with practical simulation tools.
Author |
: David K. Ferry |
Publisher |
: Cambridge University Press |
Total Pages |
: 671 |
Release |
: 2009-08-20 |
ISBN-10 |
: 9780521877480 |
ISBN-13 |
: 0521877482 |
Rating |
: 4/5 (80 Downloads) |
Synopsis Transport in Nanostructures by : David K. Ferry
The advent of semiconductor structures whose characteristic dimensions are smaller than the mean free path of carriers has led to the development of novel devices, and advances in theoretical understanding of mesoscopic systems or nanostructures. This book has been thoroughly revised and provides a much-needed update on the very latest experimental research into mesoscopic devices and develops a detailed theoretical framework for understanding their behaviour. Beginning with the key observable phenomena in nanostructures, the authors describe quantum confined systems, transmission in nanostructures, quantum dots, and single electron phenomena. Separate chapters are devoted to interference in diffusive transport, temperature decay of fluctuations, and non-equilibrium transport and nanodevices. Throughout the book, the authors interweave experimental results with the appropriate theoretical formalism. The book will be of great interest to graduate students taking courses in mesoscopic physics or nanoelectronics, and researchers working on semiconductor nanostructures.
Author |
: Hartmut Haug |
Publisher |
: World Scientific Publishing Company |
Total Pages |
: 492 |
Release |
: 1994-10-31 |
ISBN-10 |
: 9789813104785 |
ISBN-13 |
: 9813104783 |
Rating |
: 4/5 (85 Downloads) |
Synopsis Quantum Theory of the Optical and Electronic Properties of Semiconductors by : Hartmut Haug
This textbook presents the basic elements needed to understand and engage in research in semiconductor physics. It deals with elementary excitations in bulk and low-dimensional semiconductors, including quantum wells, quantum wires and quantum dots. The basic principles underlying optical nonlinearities are developed, including excitonic and many-body plasma effects. The fundamentals of optical bistability, semiconductor lasers, femtosecond excitation, optical Stark effect, semiconductor photon echo, magneto-optic effects, as well as bulk and quantum-confined Franz-Keldysh effects are covered. The material is presented in sufficient detail for graduate students and researchers who have a general background in quantum mechanics. Request Inspection Copy
Author |
: M. Balkanski |
Publisher |
: Oxford University Press |
Total Pages |
: 516 |
Release |
: 2000-08-31 |
ISBN-10 |
: 0198517408 |
ISBN-13 |
: 9780198517405 |
Rating |
: 4/5 (08 Downloads) |
Synopsis Semiconductor Physics and Applications by : M. Balkanski
This textbook covers the basic physics of semiconductors and their applications to practical devices, with emphasis on the basic physical principles upon which these devices operate. Extensive use of figures is made to enhance the clarity of the presentation and to establish contact with the experimental side of the topic. Graduate students and lecturers in semiconductor physics, condensed matter physics, electromagnetic theory, and quantum mechanics will find this a useful textbook and reference work.
Author |
: Paul Harrison |
Publisher |
: John Wiley & Sons |
Total Pages |
: 511 |
Release |
: 2005-10-31 |
ISBN-10 |
: 9780470010815 |
ISBN-13 |
: 0470010819 |
Rating |
: 4/5 (15 Downloads) |
Synopsis Quantum Wells, Wires and Dots by : Paul Harrison
Quantum Wells, Wires and Dots Second Edition: Theoretical andComputational Physics of Semiconductor Nanostructures providesall the essential information, both theoretical and computational,for complete beginners to develop an understanding of how theelectronic, optical and transport properties of quantum wells,wires and dots are calculated. Readers are lead through a series ofsimple theoretical and computational examples giving solidfoundations from which they will gain the confidence to initiatetheoretical investigations or explanations of their own. Emphasis on combining the analysis and interpretation ofexperimental data with the development of theoretical ideas Complementary to the more standard texts Aimed at the physics community at large, rather than just thelow-dimensional semiconductor expert The text present solutions for a large number of realsituations Presented in a lucid style with easy to follow steps related toaccompanying illustrative examples