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Transport In Nanostructures

development of novel devices, and advances in theoretical understanding of mesoscopic systems or nanostructures. This book has been thoroughly revised;

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Electron Transport in Nanostructures and Mesoscopic Devices

length is smaller than the electron mean free path. In quantum systems such as these, electron wave behavior prevails, and transport properties;

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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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Electronic Transport in Mesoscopic Systems

path of an electron. This book gives a thorough account of the theory of electronic transport in such mesoscopic systems. After an initial;

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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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Electrons in Solids

systems, mesoscopic transport,quantum computing, optical excitations and topological insulators. The book is focusing on an intuitive;

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Quantum Mesoscopic Phenomena and Mesoscopic Devices in Microelectronics

the Aharonov-Bohm effect, persistent currents, Coulomb blockade and Coulomb oscillations in single electron devices, Andreev reflections and;

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Carrier Transport in Nanoscale MOS Transistors

transport in nanoscale devices from basic principles of quantum mechanics through to advanced theory and various numerical techniques for electron;

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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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Nanotechnology and Nanoelectronics

transport Phenomenon in Nanostructures and the fundamental building block of nanoelectronic devices-Single-Electron Transistor is dealt in detail;

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Many-Body Quantum Theory in Condensed Matter Physics

at the same time providing physical motivation and examples. The examples are taken from applications in electron systems and transport;

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Silicon-Germanium (SiGe) Nanostructures

semiconductor devices. Silicon-germanium (SiGe) nanostructures reviews the materials science of nanostructures and their properties and applications;

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Scattering Matrix Approach To Non-Stationary Quantum Transpo

systems of non-interacting electrons. This approach admits a physically clear and transparent description of transport processes in dynamical;

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Stochastic Approaches to Electron Transport in Micro- and Nanostructures

applied for the simulation of current transport in electronic devices. Regarding the models, the historical evolution path, beginning from the;

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Fundamentals of Carrier Transport

in devices, and transport in mesoscopic systems. The use of Monte Carlo simulation methods is explained in detail. Many homework exercises are;

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Spin Dependent Transport in Magnetic Nanostructures

In magnetic systems of nano-meter size, the interplay between spin and charge of electrons provides unique transport phenomena. In magnetic;

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Advances in Imaging and Electron Physics

Advances in Optical and Electron Microscopy. The series features extended articles on the physics of electron devices (especially semiconductor;

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Supersymmetry in Disorder and Chaos

is covered in detail, including random matrix theory, persistent currents in mesoscopic rings, transport in mesoscopic devices, localization;

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Modelling of Interface Carrier Transport for Device Simulation

This book contains a comprehensive review of the physics, modelling and simulation of electron transport at interfaces in semiconductor;

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Balance Equation Approach To Electron Transport In Semiconductors

transport in nonparabolic systems, spatially nonuniform systems and semiconductor devices, miniband conduction of superlattices, hot-electron;

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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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Low-Dimensional Semiconductor Structures

of electrons and phonons in low-dimensional structures. A discussion of localization effects and quantum transport phenomena is followed by coverage;

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Low-Dimensional Semiconductor Structures

of electrons and phonons in low-dimensional structures. A discussion of localization effects and quantum transport phenomena is followed by coverage;

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