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Physics of Semiconductors and Nanostructures

Covers transport in nanostructures under an electric and magnetic field with the topics: quantized conductance, Coulomb blockade, and integer and;

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Advanced Physics of Electron Transport in Semiconductors and Nanostructures

screening and coupled interfacial modes, of electron scattering with phonons, plasmons, electrons and photons, of the derivation of transport;

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Basic Semiconductor Physics

fundamental topics such as the effective mass approximation and electron motion in a periodic potential, the Boltzmann transport equation, and;

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Semiconductor Transport

the local potential by gates, are essential for microelectronics. Semiconductor Transport is an introductory text on electron transport;

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Balance Equation Approach To Electron Transport In Semiconductors

C S Ting and the author of the present book, were reviewed in the volume entitled Physics of Hot Electron Transport in Semiconductors;

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Theory of Electron Transport in Semiconductors

for students of physics, material science, and electronics. Rather than a monograph on detailed advanced research in a speci?c area, it;

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Magnetic Resonance Of Semiconductors And Semiconductor Nanos

in semiconductors and nanostructures. It also introduces novelties such as single defects MR and electron-paramagnetic-resonance-based methods: electron;

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Semiconductor Spintronics

dynamics, manipulation and transport of spin-polarized electrons are considered. It is intended to students to semiconductor physics and;

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Functional Metal-Oxide Nanostructures

Metal oxides and their nanostructures have emerged as an important class of materials with a rich spectrum of properties and great;

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MRS Proceedings Functional Metal-Oxide Nanostructures

Metal oxides and their nanostructures have emerged as an important class of materials with a rich spectrum of properties and great;

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Transport In Nanostructures

systems, transmission in nanostructures, quantum dots, and single electron phenomena. Separate chapters are devoted to interference in diffusive;

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A Compendium of Solid State Theory

approximation schemes, to lattice oscillations and their interactions with electrons. Subsequent chapters discuss transport theory and optical;

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A Compendium of Solid State Theory

approximation schemes, to lattice oscillations and their interactions with electrons. Subsequent chapters discuss transport theory and optical;

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Electron & Nuclear Spin Dynamics in Semiconductor Nanostructures

and complex physics of manybody and nonlinear systems. As a result, understanding of the intertwined spin systems of electrons and nuclei;

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An Introduction to Quantum Transport in Semiconductors

functions, introduces relativistic bands for graphene and topological insulators and discusses the quantum transport changes that these bands induce;

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Strongly Correlated Electrons in Two Dimensions

dimensions, electron transport near the 2D Mott transition, experimentally observed temperature and magnetic field dependencies of resistivity;

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The Physics of Semiconductors

advanced topics are included, such as Bragg mirrors, resonators, polarized and magnetic semiconductors are included. Also supplied are explicit;

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Semiconductors

of this revolution. Including chapters on electronic structure, lattice dynamics, electron-phonon interactions and carrier transport it also;

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Transport in Semiconductor Mesoscopic Devices

the bulk. This book introduces the physics and applications of transport in such mesoscopic and nanoscale electronic systems and devices. The;

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Effective Electron Mass in Low-Dimensional Semiconductors

the EEM in heavily doped semiconductors and their nanostructures is discussed. This book contains 200 open research problems which form the;

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A Compendium of Solid State Theory

approximation schemes, to lattice oscillations and their interactions with electrons. Subsequent chapters discuss transport theory and optical;

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A Compendium of Solid State Theory

approximation schemes, to lattice oscillations and their interactions with electrons. Subsequent chapters discuss transport theory and optical;

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Essentials of Semiconductor Physics

theory, before covering electron-phonon coupling and charge transport. It concludes with a chapter on optical transitions. Students will need;

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Vacuum Nanoelectronic Devices

physics of quantum nanostructures, basic principles of electron field emission, and vacuum nanoelectronic devices operation, and offers as insight;

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Theory of Quantum Transport at Nanoscale

. The theoretical methods considered in the book are in the basis of our understanding of charge, spin and heat transport in nanostructures and;

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Theory of Quantum Transport at Nanoscale

. The theoretical methods considered in the book are in the basis of our understanding of charge, spin and heat transport in nanostructures and;

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Transport In Multilayered Nanostructures: The Dynamical Mean-field Theory Approach (Second Edition)

in Mutlilayered Nanostructures is varied and modern in its scope, and:A series of over 50 problems help develop the skills to allow readers to reach the;

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