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Quantum Semiconductor Structures

Quantum Semiconductor Structures PDF Author: Claude Weisbuch
Publisher: Elsevier
ISBN: 0080515576
Category : Science
Languages : en
Pages : 265

Book Description
In its original form, this widely acclaimed primer on the fundamentals of quantized semiconductor structures was published as an introductory chapter in Raymond Dingle's edited volume (24) of Semiconductors and Semimetals. Having already been praised by reviewers for its excellent coverage, this material is now available in an updated and expanded "student edition." This work promises to become a standard reference in the field. It covers the basics of electronic states as well as the fundamentals of optical interactions and quantum transport in two-dimensional quantized systems. This revised student edition also includes entirely new sections discussing applications and one-dimensional and zero-dimensional systems. Available for the first time in a new, expanded version Provides a concise introduction to the fundamentals and fascinating applications of quantized semiconductor structures

Quantum Semiconductor Structures

Quantum Semiconductor Structures PDF Author: Claude Weisbuch
Publisher: Elsevier
ISBN: 0080515576
Category : Science
Languages : en
Pages : 265

Book Description
In its original form, this widely acclaimed primer on the fundamentals of quantized semiconductor structures was published as an introductory chapter in Raymond Dingle's edited volume (24) of Semiconductors and Semimetals. Having already been praised by reviewers for its excellent coverage, this material is now available in an updated and expanded "student edition." This work promises to become a standard reference in the field. It covers the basics of electronic states as well as the fundamentals of optical interactions and quantum transport in two-dimensional quantized systems. This revised student edition also includes entirely new sections discussing applications and one-dimensional and zero-dimensional systems. Available for the first time in a new, expanded version Provides a concise introduction to the fundamentals and fascinating applications of quantized semiconductor structures

Quantized Semiconductor Structures

Quantized Semiconductor Structures PDF Author: Lairenlakpam Joyprakash Singh
Publisher: LAP Lambert Academic Publishing
ISBN: 9783659409165
Category :
Languages : en
Pages : 304

Book Description
This book is based on the theoretical study of low dimensional quantum effect devices having quantum confinements in one- two- and three- dimensions of the wave vector space such as quantum wells, metal oxide semiconductor field effect transistors, quantum wires, quantum dots, magnetic quantization, magneto quantum size effects, magnetic inversion layers, superlattices, quantum confined superlattices and field assisted transport in nanodevices. The electron transport in semiconductor devices is essentially determined by their respective band structures. Thus, the nature of the electronic properties become different in the aforementioned systems and varies with the magnitude of the quantizing magnetic field, the quantizing electric field and other types of quantum confined structures. Though various aspects of degenerate electron gases have extensively been reported, nevertheless, it appears from the literature that few other electronic properties of quantized structures have still greater promise for future research work. Keeping this in view, the author undertook theoretical investigations of few electronic properties of quantized semiconductor structures and related phenomena.

Perspectives in Quantum Hall Effects

Perspectives in Quantum Hall Effects PDF Author: Sankar Das Sarma
Publisher: John Wiley & Sons
ISBN: 3527617264
Category : Science
Languages : en
Pages : 444

Book Description
The discovery of the quantized and fractional Quantum Hall Effect phenomena is among the most important physics findings in the latter half of this century. The precise quantization of the electrical resistance involved in the quantized Hall effect phenomena has led to the new definition of the resistance standard and has metrologically affected all of science and technology. This resource consists of contributions from the top researchers in the field who present recent experimental and theoretical developments. Each chapter is self-contained and includes its own set of references guiding readers to original papers and further reading on the topic.

Heavily-Doped 2D-Quantized Structures and the Einstein Relation

Heavily-Doped 2D-Quantized Structures and the Einstein Relation PDF Author: Kamakhya P. Ghatak
Publisher: Springer
ISBN: 3319083805
Category : Science
Languages : en
Pages : 381

Book Description
This book presents the Einstein Relation(ER) in two-dimensional (2-D) Heavily Doped (HD) Quantized Structures. The materials considered are quantized structures of HD non-linear optical, III-V, II-VI, Ge, Te, Platinum Antimonide, stressed materials, GaP, Gallium Antimonide, II-V, Bismuth Telluride together with various types of HD superlattices and their Quantized counterparts respectively. The ER in HD opto-electronic materials and their nanostructures is studied in the presence of strong light waves and intense electric fields on the basis of newly formulated electron dispersion laws that control the studies of such quantum effect devices. The suggestion for the experimental determination of HD 2D and 3D ERs and the importance of measurement of band gap in HD optoelectronic materials under intense built-in electric field in nanodevices and strong external photo excitation (for measuring photon induced physical properties) are also discussed in this context. The influence of crossed electric and quantizing magnetic fields on the ER of the different 2D HD quantized structures (quantum wells, inversion and accumulation layers, quantum well HD superlattices and nipi structures) under different physical conditions is discussed in detail. This monograph contains 100 open research problems which form the integral part of the text and are useful for both Ph.D aspirants and researchers in the fields of condensed matter physics, solid-state sciences, materials science, nano-science and technology and allied fields.

Electronic Properties of Multilayers and Low-Dimensional Semiconductor Structures

Electronic Properties of Multilayers and Low-Dimensional Semiconductor Structures PDF Author: J.M. Chamberlain
Publisher: Springer Science & Business Media
ISBN: 146847412X
Category : Science
Languages : en
Pages : 477

Book Description
This Advanced Study Institute on the Electronic Properties of Multilayers and Low Dimensional Semiconductor Structures focussed on several of the most active areas in modern semiconductor physics. These included resonant tunnelling and superlattice phenomena and the topics of ballistic transport, quantised conductance and anomalous magnetoresistance effects in laterally gated two-dimensional electron systems. Although the main emphasis was on fundamental physics, a series of supporting lectures described the underlying technology (Molecular Beam Epitaxy, Metallo-Organic Chemical Vapour Deposition, Electron Beam Lithography and other advanced processing technologies). Actual and potential applications of low dimensional structures in optoelectronic and high frequency devices were also discussed. The ASI took the form of a series of lectures of about fifty minutes' duration which were given by senior researchers from a wide range of countries. Most of the lectures are recorded in these Proceedings. The younger members of the Institute made the predominant contribution to the discussion sessions following each lecture and, in addition, provided most of the fifty-five papers that were presented in two lively poster sessions. The ASl emphasised the impressive way in which this research field has developed through the fruitful interaction of theory, experiment and semiconductor device technology. Many of the talks demonstrated both the effectiveness and limitations of semiclassical concepts in describing the quantum phenomena exhibited by electrons in low dimensional structures.

Disordered Quasi-2D Semiconductor Structures: Percolation, Non-Coherent Mesoscopics, and Conductance Quantization

Disordered Quasi-2D Semiconductor Structures: Percolation, Non-Coherent Mesoscopics, and Conductance Quantization PDF Author: B. A. Aronzon
Publisher:
ISBN:
Category :
Languages : en
Pages : 3

Book Description
The electron effective state density N(ss) and dependence of the h(omega(x)) vs the Fermi energy have been also analyzed. As we have found out the state density doesn't have any noticeable energy dependence and N(ss) ^ 2m/ph(2), while the parameter h(omega(x)) rapidly drops from 100 meV down to 1 meV with the Fermi energy decreasing. The latter means that reducing of the FP screening leads to the saddle transformation into the narrow and long ballistic channel and thus detemines the conductance behavior vs the gate voltage and temperature.

Physics of Low-Dimensional Semiconductor Structures

Physics of Low-Dimensional Semiconductor Structures PDF Author: Paul N. Butcher
Publisher: Springer Science & Business Media
ISBN: 1489924159
Category : Science
Languages : en
Pages : 597

Book Description
Presenting the latest advances in artificial structures, this volume discusses in-depth the structure and electron transport mechanisms of quantum wells, superlattices, quantum wires, and quantum dots. It will serve as an invaluable reference and review for researchers and graduate students in solid-state physics, materials science, and electrical and electronic engineering.

Topics In Nanoscience - Part Ii: Quantized Structures, Nanoelectronics, Thin Films Nanosystems: Typical Results And Future

Topics In Nanoscience - Part Ii: Quantized Structures, Nanoelectronics, Thin Films Nanosystems: Typical Results And Future PDF Author: Wolfram Schommers
Publisher: World Scientific
ISBN: 9811243883
Category : Science
Languages : en
Pages : 406

Book Description
With the development of the scanning tunneling microscope, nanoscience became an important discipline. Single atoms could be manipulated in a controlled manner, and it became possible to change matter at its 'ultimate' level; it is the level on which the properties of matter emerge. This possibility enables to construct and to produce devices, materials, etc. with very small sizes and completely new properties. That opens up new perspectives for technology and is in particular relevant in connection with nano-engineering.Nanosystems are unimaginably small and very fast. No doubt, this is an important characteristic. But there is another feature, possibly more relevant, in connection with nanoscience and nanotechnology. The essential point here is that we work at the 'ultimate level'. This is the smallest level at which the properties of our world emerge, at which functional matter can exist. In particular, at this level biological individuality comes into existence. This situation can be expressed in absolute terms: This is not only the strongest material ever made, this is the strongest material it will ever be possible to make (D Ratner and M Ratner, Nanotechnology and Homeland Security). This is a very general statement. All aspects of matter are concerned here. Through the variation of the composition various forms of matter emerge with different items.Nanosystems are usually small, but they offer nevertheless the possibility to vary the structure of atomic (molecular) ensembles, creating a diversity of new material-specific properties. A large variety of experimental possibilities come into play and flexible theoretical tools are needed at the basic level. This is reflected in the different disciplines: In nanoscience and nanotechnology we have various directions: Materials science, functional nanomaterials, nanoparticles, food chemistry, medicine with brain research, quantum and molecular computing, bioinformatics, magnetic nanostructures, nano-optics, nano-electronics, etc.The properties of matter, which are involved within these nanodisciplines, are ultimate in character, i.e., their characteristic properties come into existence at this level. The book is organized in this respect.

Physics of Semiconductors and Nanostructures

Physics of Semiconductors and Nanostructures PDF Author: Jyoti Prasad Banerjee
Publisher: CRC Press
ISBN: 1482223058
Category : Science
Languages : en
Pages : 412

Book Description
This book is a comprehensive text on the physics of semiconductors and nanostructures for a large spectrum of students at the final undergraduate level studying physics, material science and electronics engineering. It offers introductory and advanced courses on solid state and semiconductor physics on one hand and the physics of low dimensional semiconductor structures on the other in a single text book. Key Features Presents basic concepts of quantum theory, solid state physics, semiconductors, and quantum nanostructures such as quantum well, quantum wire, quantum dot and superlattice In depth description of semiconductor heterojunctions, lattice strain and modulation doping technique Covers transport in nanostructures under an electric and magnetic field with the topics: quantized conductance, Coulomb blockade, and integer and fractional quantum Hall effect Presents the optical processes in nanostructures under a magnetic field Includes illustrative problems with hints for solutions in each chapter Physics of Semiconductors and Nanostructures will be helpful to students initiating PhD work in the field of semiconductor nanostructures and devices. It follows a unique tutorial approach meeting the requirements of students who find learning the concepts difficult and want to study from a physical perspective.

Heisenberg’s Uncertainty Principle and the Electron Statistics in Quantized Structures

Heisenberg’s Uncertainty Principle and the Electron Statistics in Quantized Structures PDF Author: Kamakhya Prasad Ghatak
Publisher: Springer Nature
ISBN: 9811698449
Category : Science
Languages : en
Pages : 253

Book Description
This book highlights the importance of Electron Statistics (ES), which occupies a singular position in the arena of solid state sciences, in heavily doped (HD) nanostructures by applying Heisenberg’s Uncertainty Principle directly without using the complicated Density-of-States function approach as given in the literature. The materials considered are HD quantum confined nonlinear optical, III-V, II-VI, IV-VI, GaP, Ge, PtSb2, stressed materials, GaSb, Te, II-V, Bi2Te3, lead germanium telluride, zinc and cadmium diphosphides, and quantum confined III-V, IV-VI, II-VI and HgTe/CdTe super-lattices with graded interfaces and effective mass super-lattices. The presence of intense light waves in optoelectronics and strong electric field in nano-devices change the band structure of materials in fundamental ways, which have also been incorporated in the study of ES in HD quantized structures of optoelectronic compounds that control the studies of the HD quantum effect devices under strong fields. The influence of magnetic quantization, magneto size quantization, quantum wells, wires and dots, crossed electric and quantizing fields, intense electric field, and light waves on the ES in HD quantized structures and superlattices are discussed. The content of this book finds six different applications in the arena of nano-science and nanotechnology and the various ES dependent electronic quantities, namely the effective mass, the screening length, the Einstein relation and the elastic constants have been investigated. This book is useful for researchers, engineers and professionals in the fields of Applied Sciences, solid state and materials science, nano-science and technology, condensed matter physics, and allied fields, including courses in semiconductor nanostructures. ​