Monte Carlo Simulation Of Semiconductor Devices

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Monte Carlo Simulation of Semiconductor Devices

Author : C. Moglestue
Publisher : Springer Science & Business Media
Page : 343 pages
File Size : 42,7 Mb
Release : 2013-04-17
Category : Computers
ISBN : 9789401581332

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Monte Carlo Simulation of Semiconductor Devices by C. Moglestue Pdf

Particle simulation of semiconductor devices is a rather new field which has started to catch the interest of the world's scientific community. It represents a time-continuous solution of Boltzmann's transport equation, or its quantum mechanical equivalent, and the field equation, without encountering the usual numerical problems associated with the direct solution. The technique is based on first physical principles by following in detail the transport histories of indi vidual particles and gives a profound insight into the physics of semiconductor devices. The method can be applied to devices of any geometrical complexity and material composition. It yields an accurate description of the device, which is not limited by the assumptions made behind the alternative drift diffusion and hydrodynamic models, which represent approximate solutions to the transport equation. While the development of the particle modelling technique has been hampered in the past by the cost of computer time, today this should not be held against using a method which gives a profound physical insight into individual devices and can be used to predict the properties of devices not yet manufactured. Employed in this way it can save the developer much time and large sums of money, both important considerations for the laboratory which wants to keep abreast of the field of device research. Applying it to al ready existing electronic components may lead to novel ideas for their improvement. The Monte Carlo particle simulation technique is applicable to microelectronic components of any arbitrary shape and complexity.

The Monte Carlo Method for Semiconductor Device Simulation

Author : Carlo Jacoboni,Paolo Lugli
Publisher : Springer Science & Business Media
Page : 370 pages
File Size : 54,6 Mb
Release : 2012-12-06
Category : Technology & Engineering
ISBN : 9783709169636

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The Monte Carlo Method for Semiconductor Device Simulation by Carlo Jacoboni,Paolo Lugli Pdf

This volume presents the application of the Monte Carlo method to the simulation of semiconductor devices, reviewing the physics of transport in semiconductors, followed by an introduction to the physics of semiconductor devices.

Simulation of Semiconductor Devices and Processes

Author : Heiner Ryssel,Peter Pichler
Publisher : Springer Science & Business Media
Page : 515 pages
File Size : 54,6 Mb
Release : 2012-12-06
Category : Computers
ISBN : 9783709166192

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Simulation of Semiconductor Devices and Processes by Heiner Ryssel,Peter Pichler Pdf

SISDEP ’95 provides an international forum for the presentation of state-of-the-art research and development results in the area of numerical process and device simulation. Continuously shrinking device dimensions, the use of new materials, and advanced processing steps in the manufacturing of semiconductor devices require new and improved software. The trend towards increasing complexity in structures and process technology demands advanced models describing all basic effects and sophisticated two and three dimensional tools for almost arbitrarily designed geometries. The book contains the latest results obtained by scientists from more than 20 countries on process simulation and modeling, simulation of process equipment, device modeling and simulation of novel devices, power semiconductors, and sensors, on device simulation and parameter extraction for circuit models, practical application of simulation, numerical methods, and software.

Monte Carlo Device Simulation

Author : Karl Hess
Publisher : Springer
Page : 310 pages
File Size : 51,5 Mb
Release : 2012-10-11
Category : Technology & Engineering
ISBN : 1461368006

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Monte Carlo Device Simulation by Karl Hess Pdf

Monte Carlo simulation is now a well established method for studying semiconductor devices and is particularly well suited to highlighting physical mechanisms and exploring material properties. Not surprisingly, the more completely the material properties are built into the simulation, up to and including the use of a full band structure, the more powerful is the method. Indeed, it is now becoming increasingly clear that phenomena such as reliabil ity related hot-electron effects in MOSFETs cannot be understood satisfac torily without using full band Monte Carlo. The IBM simulator DAMOCLES, therefore, represents a landmark of great significance. DAMOCLES sums up the total of Monte Carlo device modeling experience of the past, and reaches with its capabilities and opportunities into the distant future. This book, therefore, begins with a description of the IBM simulator. The second chapter gives an advanced introduction to the physical basis for Monte Carlo simulations and an outlook on why complex effects such as collisional broadening and intracollisional field effects can be important and how they can be included in the simulations. References to more basic intro the book. The third chapter ductory material can be found throughout describes a typical relationship of Monte Carlo simulations to experimental data and indicates a major difficulty, the vast number of deformation poten tials required to simulate transport throughout the entire Brillouin zone. The fourth chapter addresses possible further extensions of the Monte Carlo approach and subtleties of the electron-electron interaction.

Hierarchical Device Simulation

Author : Christoph Jungemann,Bernd Meinerzhagen
Publisher : Springer Science & Business Media
Page : 278 pages
File Size : 53,5 Mb
Release : 2012-12-06
Category : Technology & Engineering
ISBN : 9783709160862

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Hierarchical Device Simulation by Christoph Jungemann,Bernd Meinerzhagen Pdf

This monograph is the first on physics-based simulations of novel strained Si and SiGe devices. It provides an in-depth description of the full-band monte-carlo method for SiGe and discusses the common theoretical background of the drift-diffusion, hydrodynamic and Monte-Carlo models and their synergy.

Numerical Simulation of Submicron Semiconductor Devices

Author : Kazutaka Tomizawa
Publisher : Artech House on Demand
Page : 341 pages
File Size : 43,9 Mb
Release : 1993-01-01
Category : Mathematics
ISBN : 0890066205

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Numerical Simulation of Submicron Semiconductor Devices by Kazutaka Tomizawa Pdf

Describes the basic theory of carrier transport, develops numerical algorithms used for transport problems or device simulations, and presents real-world examples of implementation.

Analysis and Simulation of Semiconductor Devices

Author : S. Selberherr
Publisher : Springer Science & Business Media
Page : 308 pages
File Size : 49,9 Mb
Release : 2012-12-06
Category : Technology & Engineering
ISBN : 9783709187524

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Analysis and Simulation of Semiconductor Devices by S. Selberherr Pdf

The invention of semiconductor devices is a fairly recent one, considering classical time scales in human life. The bipolar transistor was announced in 1947, and the MOS transistor, in a practically usable manner, was demonstrated in 1960. From these beginnings the semiconductor device field has grown rapidly. The first integrated circuits, which contained just a few devices, became commercially available in the early 1960s. Immediately thereafter an evolution has taken place so that today, less than 25 years later, the manufacture of integrated circuits with over 400.000 devices per single chip is possible. Coincident with the growth in semiconductor device development, the literature concerning semiconductor device and technology issues has literally exploded. In the last decade about 50.000 papers have been published on these subjects. The advent of so called Very-Large-Scale-Integration (VLSI) has certainly revealed the need for a better understanding of basic device behavior. The miniaturization of the single transistor, which is the major prerequisite for VLSI, nearly led to a breakdown of the classical models of semiconductor devices.

Simulation of Semiconductor Devices and Processes

Author : Siegfried Selberherr,Hannes Stippel,Ernst Strasser
Publisher : Springer Science & Business Media
Page : 525 pages
File Size : 52,6 Mb
Release : 2012-12-06
Category : Computers
ISBN : 9783709166574

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Simulation of Semiconductor Devices and Processes by Siegfried Selberherr,Hannes Stippel,Ernst Strasser Pdf

The "Fifth International Conference on Simulation of Semiconductor Devices and Processes" (SISDEP 93) continues a series of conferences which was initiated in 1984 by K. Board and D. R. J. Owen at the University College of Wales, Swansea, where it took place a second time in 1986. Its organization was succeeded by G. Baccarani and M. Rudan at the University of Bologna in 1988, and W. Fichtner and D. Aemmer at the Federal Institute of Technology in Zurich in 1991. This year the conference is held at the Technical University of Vienna, Austria, September 7 - 9, 1993. This conference shall provide an international forum for the presentation of out standing research and development results in the area of numerical process and de vice simulation. The miniaturization of today's semiconductor devices, the usage of new materials and advanced process steps in the development of new semiconduc tor technologies suggests the design of new computer programs. This trend towards more complex structures and increasingly sophisticated processes demands advanced simulators, such as fully three-dimensional tools for almost arbitrarily complicated geometries. With the increasing need for better models and improved understand ing of physical effects, the Conference on Simulation of Semiconductor Devices and Processes brings together the simulation community and the process- and device en gineers who need reliable numerical simulation tools for characterization, prediction, and development.

Semiconductor Devices

Author : Kevin M. Kramer,W. Nicholas G. Hitchon
Publisher : Prentice Hall
Page : 746 pages
File Size : 55,6 Mb
Release : 1997
Category : Business & Economics
ISBN : STANFORD:36105020110552

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Semiconductor Devices by Kevin M. Kramer,W. Nicholas G. Hitchon Pdf

CD-ROM contains: "Win32 version of SGFramework and the simulations contains in the book."

Introduction to Semiconductor Device Modelling

Author : Christopher M. Snowden
Publisher : World Scientific
Page : 242 pages
File Size : 43,9 Mb
Release : 1998
Category : Science
ISBN : 981023693X

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Introduction to Semiconductor Device Modelling by Christopher M. Snowden Pdf

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.

Semiconductor Transport

Author : David Ferry
Publisher : CRC Press
Page : 379 pages
File Size : 41,9 Mb
Release : 2016-08-12
Category : Science
ISBN : 9781351973380

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Semiconductor Transport by David Ferry Pdf

The information revolution would have been radically different, or impossible, without the use of the materials known generically as semiconductors. The properties of these materials, particularly the potential for doping with impurities to create transistors and diodes and controlling the local potential by gates, are essential for microelectronics. Semiconductor Transport is an introductory text on electron transport in semiconductor materials and is written for advanced undergraduates and graduate students. The book provides a thorough treatment of modern approaches to the transport properties of semiconductors and their calculation. It also introduces those aspects of solid state physics, which are vitally important for understanding transport in them.

Simulation of Semiconductor Devices and Processes

Author : Siegfried Selberherr,Hannes Stippel,Ernst Strasser
Publisher : Springer
Page : 532 pages
File Size : 53,9 Mb
Release : 1993
Category : Science
ISBN : 0387825045

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Simulation of Semiconductor Devices and Processes by Siegfried Selberherr,Hannes Stippel,Ernst Strasser Pdf

Handbook of Optoelectronic Device Modeling and Simulation

Author : Joachim Piprek
Publisher : CRC Press
Page : 887 pages
File Size : 53,6 Mb
Release : 2017-10-12
Category : Science
ISBN : 9781498749572

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Handbook of Optoelectronic Device Modeling and Simulation by Joachim Piprek Pdf

Provides a comprehensive survey of fundamental concepts and methods for optoelectronic device modeling and simulation. Gives a broad overview of concepts with concise explanations illustrated by real results. Compares different levels of modeling, from simple analytical models to complex numerical models. Discusses practical methods of model validation. Includes an overview of numerical techniques.

Hierarchical Device Simulation

Author : Christoph Jungemann,Bernd Meinerzhagen
Publisher : Springer Science & Business Media
Page : 282 pages
File Size : 52,5 Mb
Release : 2003-06-05
Category : Technology & Engineering
ISBN : 321101361X

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Hierarchical Device Simulation by Christoph Jungemann,Bernd Meinerzhagen Pdf

This monograph is the first on physics-based simulations of novel strained Si and SiGe devices. It provides an in-depth description of the full-band monte-carlo method for SiGe and discusses the common theoretical background of the drift-diffusion, hydrodynamic and Monte-Carlo models and their synergy.

Simulation of Semiconductor Devices and Processes, Vol. 6

Author : Heiner Ryssel,Peter Pichler
Publisher : Springer Science & Business Media
Page : 526 pages
File Size : 41,8 Mb
Release : 1995
Category : Computers
ISBN : 3211827366

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Simulation of Semiconductor Devices and Processes, Vol. 6 by Heiner Ryssel,Peter Pichler Pdf

SISDEP '95 provides an international forum for the presentation of state-of-the-art research and development results in the area of numerical process and device simulation. Continuously shrinking device dimensions, the use of new materials, and advanced processing steps in the manufacturing of semiconductor devices require new and improved software. The trend towards increasing complexity in structures and process technology demands advanced models describing all basic effects and sophisticated two and three dimensional tools for almost arbitrarily designed geometries. The book contains the latest results obtained by scientists from more than 20 countries on process simulation and modeling, simulation of process equipment, device modeling and simulation of novel devices, power semiconductors, and sensors, on device simulation and parameter extraction for circuit models, practical application of simulation, numerical methods, and software.