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Physical Models of Semiconductor Quantum Devices

Physical Models of Semiconductor Quantum Devices PDF Author: Ying Fu
Publisher: Springer Science & Business Media
ISBN: 9400771746
Category : Science
Languages : en
Pages : 416

Book Description
The science and technology relating to nanostructures continues to receive significant attention for its applications to various fields including microelectronics, nanophotonics, and biotechnology. This book describes the basic quantum mechanical principles underlining this fast developing field. From the fundamental principles of quantum mechanics to nanomaterial properties, from device physics to research and development of new systems, this title is aimed at undergraduates, graduates, postgraduates, and researchers.

Physical Models of Semiconductor Quantum Devices

Physical Models of Semiconductor Quantum Devices PDF Author: Ying Fu
Publisher: Springer Science & Business Media
ISBN: 9400771746
Category : Science
Languages : en
Pages : 416

Book Description
The science and technology relating to nanostructures continues to receive significant attention for its applications to various fields including microelectronics, nanophotonics, and biotechnology. This book describes the basic quantum mechanical principles underlining this fast developing field. From the fundamental principles of quantum mechanics to nanomaterial properties, from device physics to research and development of new systems, this title is aimed at undergraduates, graduates, postgraduates, and researchers.

Physical Models of Semiconductor Quantum Devices

Physical Models of Semiconductor Quantum Devices PDF Author: Ying Fu
Publisher: Springer
ISBN: 9781461551423
Category : Technology & Engineering
Languages : en
Pages : 263

Book Description
This detailed book addresses three main areas of solid state electronics, providing an insight into the state of the art in material and device research that will be of interest to all those involved in compound semiconductors.

Physical Models of Semiconductor Quantum Devices

Physical Models of Semiconductor Quantum Devices PDF Author: Ying Fu
Publisher: Springer
ISBN: 1461551412
Category : Technology & Engineering
Languages : en
Pages : 271

Book Description
This detailed book addresses three main areas of solid state electronics, providing an insight into the state of the art in material and device research that will be of interest to all those involved in compound semiconductors.

Theory of Semiconductor Quantum Devices

Theory of Semiconductor Quantum Devices PDF Author: Fausto Rossi
Publisher: Springer Science & Business Media
ISBN: 3642105564
Category : Technology & Engineering
Languages : en
Pages : 382

Book Description
Primary goal of this book is to provide a cohesive description of the vast field of semiconductor quantum devices, with special emphasis on basic quantum-mechanical phenomena governing the electro-optical response of new-generation nanomaterials. The book will cover within a common language different types of optoelectronic nanodevices, including quantum-cascade laser sources and detectors, few-electron/exciton quantum devices, and semiconductor-based quantum logic gates. The distinguishing feature of the present volume is a unified microscopic treatment of quantum-transport and coherent-optics phenomena on ultrasmall space- and time-scales, as well as of their semiclassical counterparts.

Physical Models for Semiconductor Devices

Physical Models for Semiconductor Devices PDF Author: John E. Carroll
Publisher: Hodder Education
ISBN:
Category : Technology & Engineering
Languages : en
Pages : 280

Book Description


Physical Models for Quantum Dots

Physical Models for Quantum Dots PDF Author: Jean-Pierre Leburton
Publisher: CRC Press
ISBN: 1000348199
Category : Technology & Engineering
Languages : en
Pages : 991

Book Description
Since the early 1990s, quantum dots have become an integral part of research in solid state physics for their fundamental properties that mimic the behavior of atoms and molecules on a larger scale. They also have a broad range of applications in engineering and medicines for their ability to tune their electronic properties to achieve specific functions. This book is a compilation of articles that span 20 years of research on comprehensive physical models developed by their authors to understand the detailed properties of these quantum objects and to tailor them for specific applications. Far from being exhaustive, this book focuses on topics of interest for solid state physicists, materials scientists, engineers, and general readers, such as quantum dots and nanocrystals for single-electron charging with applications in memory devices, quantum dots for electron-spin manipulation with applications in quantum information processing, and finally self-assembled quantum dots for applications in nanophotonics.

Advanced Physical Models for Silicon Device Simulation

Advanced Physical Models for Silicon Device Simulation PDF Author: Andreas Schenk
Publisher: Springer Science & Business Media
ISBN: 9783211830529
Category : Technology & Engineering
Languages : en
Pages : 384

Book Description
From the reviews: "... this is a well produced book, written in a easy to read style, and will also be a very useful primer for someone starting out the field [...], and a useful source of reference for experienced users ..." Microelectronics Journal

Compound Semiconductor Device Modelling

Compound Semiconductor Device Modelling PDF Author: Christopher M. Snowden
Publisher: Springer Science & Business Media
ISBN: 1447120485
Category : Technology & Engineering
Languages : en
Pages : 295

Book Description
Compound semiconductor devices form the foundation of solid-state microwave and optoelectronic technologies used in many modern communication systems. In common with their low frequency counterparts, these devices are often represented using equivalent circuit models, but it is often necessary to resort to physical models in order to gain insight into the detailed operation of compound semiconductor devices. Many of the earliest physical models were indeed developed to understand the 'unusual' phenomena which occur at high frequencies. Such was the case with the Gunn and IMPATI diodes, which led to an increased interest in using numerical simulation methods. Contemporary devices often have feature sizes so small that they no longer operate within the familiar traditional framework, and hot electron or even quantum mechanical models are required. The need for accurate and efficient models suitable for computer aided design has increased with the demand for a wider range of integrated devices for operation at microwave, millimetre and optical frequencies. The apparent complexity of equivalent circuit and physics-based models distinguishes high frequency devices from their low frequency counterparts . . Over the past twenty years a wide range of modelling techniques have emerged suitable for describing the operation of compound semiconductor devices. This book brings together for the first time the most popular techniques in everyday use by engineers and scientists. The book specifically addresses the requirements and techniques suitable for modelling GaAs, InP. ternary and quaternary semiconductor devices found in modern technology.

Introduction to Semiconductor Device Modelling

Introduction to Semiconductor Device Modelling PDF Author: Christopher M. Snowden
Publisher: World Scientific
ISBN: 9789810236939
Category : Science
Languages : en
Pages : 242

Book Description
This book deals mainly with physical device models which are developed from the carrier transport physics and device geometry considerations. The text concentrates on silicon and gallium arsenide devices and includes models of silicon bipolar junction transistors, junction field effect transistors (JFETs), MESFETs, silicon and GaAs MESFETs, transferred electron devices, pn junction diodes and Schottky varactor diodes. The modelling techniques of more recent devices such as the heterojunction bipolar transistors (HBT) and the high electron mobility transistors are discussed. This book contains details of models for both equilibrium and non-equilibrium transport conditions. The modelling Technique of Small-scale devices is discussed and techniques applicable to submicron-dimensioned devices are included. A section on modern quantum transport analysis techniques is included. Details of essential numerical schemes are given and a variety of device models are used to illustrate the application of these techniques in various fields.

Physical Models for Quantum Wires, Nanotubes, and Nanoribbons

Physical Models for Quantum Wires, Nanotubes, and Nanoribbons PDF Author: Jean-Pierre Leburton
Publisher: CRC Press
ISBN: 1000461262
Category : Science
Languages : en
Pages : 535

Book Description
Quantum wires are artificial structures characterized by nanoscale cross sections that contain charged particles moving along a single degree of freedom. With electronic motions constrained into standing modes along with the two other spatial directions, they have been primarily investigated for their unidimensional dynamics of quantum-confined charge carriers, which eventually led to broad applications in large-scale nanoelectronics. This book is a compilation of articles that span more than 30 years of research on developing comprehensive physical models that describe the physical properties of these unidimensional semiconductor structures. The articles address the effect of quantum confinement on lattice vibrations, carrier scattering rates, and charge transport as well as present practical examples of solutions to the Boltzmann equation by analytical techniques and by numerical simulations such as the Monte Carlo method. The book also presents topics on quantum transport and spin effects in unidimensional molecular structures such as carbon nanotubes and graphene nanoribbons in terms of non-equilibrium Green’s function approaches and density functional theory.