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Atomistic Simulation Of Quantum Transport In Nanoelectronic Devices (With Cd-rom)

atomistic device simulations. Nevertheless those packages are either black boxes (commercial codes) or accessible only to very limited users;

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Nanoelectronic Devices

This book provides readers with the knowledge in fundamentals of nanoelectronic devicesThe authors build the principles of nanoelectronic;

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Electronic Conduction

principles of electronic conduction in microelectronic and nanoelectronic devices, with an emphasis on integrating the quantum aspects of conduction;

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Introductory Nanoelectronics

operation of nanoelectronic devices. The author makes a thorough and systematic presentation of electron transport in quantum-confined systems.;

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Computational Electronics

transport analysis of state-of-the-art devices, Computational Electronics: Semiclassical and Quantum Device Modeling and Simulation provides a;

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The Wigner Monte-Carlo Method for Nanoelectronic Devices

This book gives an overview of the quantum transport approaches for nanodevices and focuses on the Wigner formalism. It details the;

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Nanotechnology and Nanoelectronics

associated with nanostructures. Quantum Mechanics being a fundamental aspect related to nanoelectronics, the text books provides enough material for;

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Quantum Transport Calculations for Nanosystems

As electric devices become smaller and smaller, transport simulations based on the quantum mechanics become more and more important. There;

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Introduction to the Physics of Nanoelectronics

This book provides an introduction to the physics of nanoelectronics, with a focus on the theoretical aspects of nanoscale devices. The;

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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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An Introduction to Quantum Transport in Semiconductors

mechanical nature of the transport of carriers through nanoelectronic structures. The book is unique in that addresses quantum transport only in the;

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Functional Nanostructures and Metamaterials for Superconducting Spintronics

nanoelectronic devices and how they are used for engineering nanostructures and metamaterials with unusual properties. It discusses topics such as;

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Nanoelectronic devices in InGaAs/InP

being investigated. With this background, the present book focuses on nanoelectronic devices in InGaAs/InP based on ballistic and quantum;

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3D TCAD Simulation for CMOS Nanoeletronic Devices

-oxide-semiconductor) semiconductor nanoelectronic devices, while also providing selected source codes (Technology Computer-Aided Design, TCAD;

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3D TCAD Simulation for CMOS Nanoeletronic Devices

-oxide-semiconductor) semiconductor nanoelectronic devices, while also providing selected source codes (Technology Computer-Aided Design, TCAD;

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Computer Aided Design of Micro- and Nanoelectronic Devices

Micro and nanoelectronic devices are the prime movers for electronics, which is essential for the current information age. This unique;

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Modelling of Interface Carrier Transport for Device Simulation

devices. It combines a review of existing interface charge transport models with original developments, and introduces a unified representation;

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Spintronics in Nanoscale Devices

By exploiting the novel properties of quantum dots and nanoscale Aharonov-Bohm rings together with the electronic and magnetic properties;

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Nanoelectronic Device Applications Handbook

humidity sensors Single electron transistors and other electron tunneling devices Quantum cellular automata and nanomagnetic logic Memristors as;

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System Reduction for Nanoscale IC Design

tailored to circuit equations and drift diffusion equations for semiconductor devices. The performance of these methods is illustrated with;

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System Reduction for Nanoscale IC Design

tailored to circuit equations and drift diffusion equations for semiconductor devices. The performance of these methods is illustrated with;

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Electrically Driven Quantum Dot Based Single-Photon Sources

-consistently couples semi-classical carrier transport theory with open quantum many-body systems. This allows for a comprehensive description;

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Electrically Driven Quantum Dot Based Single-Photon Sources

-consistently couples semi-classical carrier transport theory with open quantum many-body systems. This allows for a comprehensive description;

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Quantum Transport

way from hydrogen to nanostructures, with extensive coverage of current flow. The final chapter summarizes the equations for quantum transport;

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Quantum Transport

way from hydrogen to nanostructures, with extensive coverage of current flow. The final chapter summarizes the equations for quantum transport;

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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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Computational Physics of Carbon Nanotubes

classic statistical and quantum mechanical simulation techniques, (including molecular dynamics, Monte Carlo simulations and ab initio molecular;

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