Simulation Of Transport In Nanodevices

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Simulation of Transport in Nanodevices

Author : François Triozon,Philippe Dollfus
Publisher : John Wiley & Sons
Page : 400 pages
File Size : 49,8 Mb
Release : 2016-12-27
Category : Technology & Engineering
ISBN : 9781848215665

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Simulation of Transport in Nanodevices by François Triozon,Philippe Dollfus Pdf

Linear current-voltage pattern, has been and continues to be the basis for characterizing, evaluating performance, and designing integrated circuits, but is shown not to hold its supremacy as channel lengths are being scaled down. In a nanoscale circuit with reduced dimensionality in one or more of the three Cartesian directions, quantum effects transform the carrier statistics. In the high electric field, the collision free ballistic transform is predicted, while in low electric field the transport remains predominantly scattering-limited. In a micro/nano-circuit, even a low logic voltage of 1 V is above the critical voltage triggering nonohmic behavior that results in ballistic current saturation. A quantum emission may lower this ballistic velocity.

Atomistic Simulation of Quantum Transport in Nanoelectronic Devices

Author : Yu Zhu,Lei Liu
Publisher : World Scientific
Page : 436 pages
File Size : 41,8 Mb
Release : 2016-05-20
Category : Science
ISBN : 9789813141445

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Atomistic Simulation of Quantum Transport in Nanoelectronic Devices by Yu Zhu,Lei Liu Pdf

Computational nanoelectronics is an emerging multi-disciplinary field covering condensed matter physics, applied mathematics, computer science, and electronic engineering. In recent decades, a few state-of-the-art software packages have been developed to carry out first-principle atomistic device simulations. Nevertheless those packages are either black boxes (commercial codes) or accessible only to very limited users (private research codes). The purpose of this book is to open one of the commercial black boxes, and to demonstrate the complete procedure from theoretical derivation, to numerical implementation, all the way to device simulation. Meanwhile the affiliated source code constitutes an open platform for new researchers. This is the first book of its kind. We hope the book will make a modest contribution to the field of computational nanoelectronics. Contents:IntroductionThe NECPA TheoryThe NECPA-LMTO MethodNanoDsim: The Package DesignNanoDsim: Bulk SystemsNanoDsim: Two-Probe SystemsNanoDsim: Optimization and ParallelizationKaleidoscope of the Physics in Disordered SystemsAppendix Readership: Post-graduate students or professional researchers who are interested in computational physics, device physics, quantum transport, disorder systems, and overlap of the above.

Transport of Information-Carriers in Semiconductors and Nanodevices

Author : El-Saba, Muhammad
Publisher : IGI Global
Page : 677 pages
File Size : 50,7 Mb
Release : 2017-03-31
Category : Technology & Engineering
ISBN : 9781522523130

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Transport of Information-Carriers in Semiconductors and Nanodevices by El-Saba, Muhammad Pdf

Rapid developments in technology have led to enhanced electronic systems and applications. When utilized correctly, these can have significant impacts on communication and computer systems. Transport of Information-Carriers in Semiconductors and Nanodevices is an innovative source of academic material on transport modelling in semiconductor material and nanoscale devices. Including a range of perspectives on relevant topics such as charge carriers, semiclassical transport theory, and organic semiconductors, this is an ideal publication for engineers, researchers, academics, professionals, and practitioners interested in emerging developments on transport equations that govern information carriers.

Nanostructures

Author : Christophe Jean Delerue,Michel Lannoo
Publisher : Springer Science & Business Media
Page : 313 pages
File Size : 41,9 Mb
Release : 2013-06-29
Category : Technology & Engineering
ISBN : 9783662089033

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Nanostructures by Christophe Jean Delerue,Michel Lannoo Pdf

Provides the theoretical background needed by physicists, engineers and students to simulate nano-devices, semiconductor quantum dots and molecular devices. It presents in a unified way the theoretical concepts, the more recent semi-empirical and ab initio methods, and their application to experiments. The topics include quantum confinement, dielectric and optical properties, non-radiative processes, defects and impurities, and quantum transport. This guidebook not only provides newcomers with an accessible overview (requiring only basic knowledge of quantum mechanics and solid-state physics) but also provides active researchers with practical simulation tools.

Thermal Transport for Applications in Micro/Nanomachining

Author : Basil T. Wong,Pinar M. Mengüç
Publisher : Springer Science & Business Media
Page : 243 pages
File Size : 45,6 Mb
Release : 2008-07-19
Category : Science
ISBN : 9783540736073

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Thermal Transport for Applications in Micro/Nanomachining by Basil T. Wong,Pinar M. Mengüç Pdf

Beginning with an overview of nanomachining, this monograph introduces the relevant concepts from solid-state physics, thermodynamics, and lattice structures. It then covers modeling of thermal transport at the nanoscale and details simulations of different processes relevant to nanomachining. The final chapter summarizes the important points and discusses directions for future work to improve the modeling of nanomachining.

Springer Handbook of Semiconductor Devices

Author : Massimo Rudan,Rossella Brunetti,Susanna Reggiani
Publisher : Springer Nature
Page : 1680 pages
File Size : 49,8 Mb
Release : 2022-11-10
Category : Technology & Engineering
ISBN : 9783030798277

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Springer Handbook of Semiconductor Devices by Massimo Rudan,Rossella Brunetti,Susanna Reggiani Pdf

This Springer Handbook comprehensively covers the topic of semiconductor devices, embracing all aspects from theoretical background to fabrication, modeling, and applications. Nearly 100 leading scientists from industry and academia were selected to write the handbook's chapters, which were conceived for professionals and practitioners, material scientists, physicists and electrical engineers working at universities, industrial R&D, and manufacturers. Starting from the description of the relevant technological aspects and fabrication steps, the handbook proceeds with a section fully devoted to the main conventional semiconductor devices like, e.g., bipolar transistors and MOS capacitors and transistors, used in the production of the standard integrated circuits, and the corresponding physical models. In the subsequent chapters, the scaling issues of the semiconductor-device technology are addressed, followed by the description of novel concept-based semiconductor devices. The last section illustrates the numerical simulation methods ranging from the fabrication processes to the device performances. Each chapter is self-contained, and refers to related topics treated in other chapters when necessary, so that the reader interested in a specific subject can easily identify a personal reading path through the vast contents of the handbook.

Atomistic Simulation of Quantum Transport in Nanoelectronic Devices

Author : Yu Zhu (Physicist),Lei Liu (Physicist)
Publisher : Unknown
Page : 436 pages
File Size : 42,9 Mb
Release : 2016
Category : Electron transport
ISBN : 9813141433

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Atomistic Simulation of Quantum Transport in Nanoelectronic Devices by Yu Zhu (Physicist),Lei Liu (Physicist) Pdf

"Computational nanoelectronics is an emerging multi-disciplinary field covering condensed matter physics, applied mathematics, computer science, and electronic engineering. In recent decades, a few state-of-the-art software packages have been developed to carry out first-principle atomistic device simulations. Nevertheless those packages are either black boxes (commercial codes) or accessible only to very limited users (private research codes). The purpose of this book is to open one of the commercial black boxes, and to demonstrate the complete procedure from theoretical derivation, to numerical implementation, all the way to device simulation. Meanwhile the affiliated source code constitutes an open platform for new researchers. This is the first book of its kind. We hope the book will make a modest contribution to the field of computational nanoelectronics"--

High Performance Computing And Its Applications In The Physical Sciences - Proceedings Of The Mardi Gras '93 Conference

Author : Dana Alan Browne
Publisher : World Scientific
Page : 274 pages
File Size : 41,5 Mb
Release : 1994-04-15
Category : Electronic
ISBN : 9789814551557

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High Performance Computing And Its Applications In The Physical Sciences - Proceedings Of The Mardi Gras '93 Conference by Dana Alan Browne Pdf

This archival volume is an invaluable collection of rigorously reviewed articles by experts in the fields of gene families, DNA, RNA and proteins, to commemorate the passing of a giant of science — Professor Clement L Markert (1917-1999).In 1959, Clement Markert and Freddy Moller developed the concept of the isozyme, which paved the way for extensive studies of enzyme, protein and gene multiplicity across all living organisms. This important scientific discovery has had a profound influence on the biological sciences for more than 40 years, and has provided the basis for regular international meetings to discuss the biological and biomedical implications of enzyme multiplicity. More recently, this concept has been extended to a wide range of gene families of DNA, RNA, proteins and enzymes.

Modeling and Control for Micro/Nano Devices and Systems

Author : Ning Xi,Mingjun Zhang,Guangyong Li
Publisher : CRC Press
Page : 175 pages
File Size : 51,6 Mb
Release : 2017-12-19
Category : Mathematics
ISBN : 9781466554061

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Modeling and Control for Micro/Nano Devices and Systems by Ning Xi,Mingjun Zhang,Guangyong Li Pdf

Micro/nano-scale engineering—especially the design and implementation of ultra-fast and ultra-scale energy devices, sensors, and cellular and molecular systems—remains a daunting challenge. Modeling and control has played an essential role in many technological breakthroughs throughout the course of history. Therefore, the need for a practical guide to modeling and control for micro/nano-scale devices and systems has emerged. The first edited volume to address this rapidly growing field, Modeling and Control for Micro/Nano Devices and Systems gives control engineers, lab managers, high-tech researchers, and graduate students easy access to the expert contributors’ cutting-edge knowledge of micro/nanotechnology, energy, and bio-systems. The editors offer an integrated view from theory to practice, covering diverse topics ranging from micro/nano-scale sensors to energy devices and control of biology systems in cellular and molecular levels. The book also features numerous case studies for modeling of micro/nano devices and systems, and explains how the models can be used for control and optimization purposes. Readers benefit from learning the latest modeling techniques for micro/nano-scale devices and systems, and then applying those techniques to their own research and development efforts.

Theory and Simulation Methods for Electronic and Phononic Transport in Thermoelectric Materials

Author : Neophytos Neophytou
Publisher : Springer
Page : 86 pages
File Size : 40,8 Mb
Release : 2020-03-17
Category : Technology & Engineering
ISBN : 3030386805

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Theory and Simulation Methods for Electronic and Phononic Transport in Thermoelectric Materials by Neophytos Neophytou Pdf

This book introduces readers to state-of-the-art theoretical and simulation techniques for determining transport in complex band structure materials and nanostructured-geometry materials, linking the techniques developed by the electronic transport community to the materials science community. Starting from the semi-classical Boltzmann Transport Equation method for complex band structure materials, then moving on to Monte Carlo and fully quantum mechanical models for nanostructured materials, the book addresses the theory and computational complexities of each method, as well as their advantages and capabilities. Presented in language that is accessible to junior computational scientists, while including enough detail and depth with regards to numerical implementation to tackle modern research problems, it offers a valuable resource for computational scientists and postgraduate researchers whose work involves the theory and simulation of electro-thermal transport in advanced materials.

Advances in III-V Semiconductor Nanowires and Nanodevices

Author : Jianye Li,Deli Wang,Ray R. LaPierre
Publisher : Bentham Science Publishers
Page : 186 pages
File Size : 50,9 Mb
Release : 2011-09-09
Category : Technology & Engineering
ISBN : 9781608050529

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Advances in III-V Semiconductor Nanowires and Nanodevices by Jianye Li,Deli Wang,Ray R. LaPierre Pdf

"Semiconductor nanowires exhibit novel electronic and optical properties due to their unique one-dimensional structure and quantum confinement effects. In particular, III-V semiconductor nanowires have been of great scientific and technological interest fo"

Semiconductor-On-Insulator Materials for Nanoelectronics Applications

Author : Alexei Nazarov,J.-P. Colinge,Francis Balestra,Jean-Pierre Raskin,Francisco Gamiz,V.S. Lysenko
Publisher : Springer Science & Business Media
Page : 437 pages
File Size : 54,5 Mb
Release : 2011-03-03
Category : Technology & Engineering
ISBN : 9783642158681

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Semiconductor-On-Insulator Materials for Nanoelectronics Applications by Alexei Nazarov,J.-P. Colinge,Francis Balestra,Jean-Pierre Raskin,Francisco Gamiz,V.S. Lysenko Pdf

"Semiconductor-On-Insulator Materials for NanoElectronics Applications” is devoted to the fast evolving field of modern nanoelectronics, and more particularly to the physics and technology of nanoelectronic devices built on semiconductor-on-insulator (SemOI) systems. The book contains the achievements in this field from leading companies and universities in Europe, USA, Brazil and Russia. It is articulated around four main topics: 1. New semiconductor-on-insulator materials; 2. Physics of modern SemOI devices; 3. Advanced characterization of SemOI devices; 4. Sensors and MEMS on SOI. "Semiconductor-On-Insulator Materials for NanoElectonics Applications” is useful not only to specialists in nano- and microelectronics but also to students and to the wider audience of readers who are interested in new directions in modern electronics and optoelectronics.

Molecular Dynamics

Author : Lichang Wang
Publisher : BoD – Books on Demand
Page : 440 pages
File Size : 45,9 Mb
Release : 2012-04-05
Category : Mathematics
ISBN : 9789535104438

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Molecular Dynamics by Lichang Wang Pdf

Molecular Dynamics is a two-volume compendium of the ever-growing applications of molecular dynamics simulations to solve a wider range of scientific and engineering challenges. The contents illustrate the rapid progress on molecular dynamics simulations in many fields of science and technology, such as nanotechnology, energy research, and biology, due to the advances of new dynamics theories and the extraordinary power of today's computers. This first book begins with a general description of underlying theories of molecular dynamics simulations and provides extensive coverage of molecular dynamics simulations in nanotechnology and energy. Coverage of this book includes: Recent advances of molecular dynamics theory Formation and evolution of nanoparticles of up to 106 atoms Diffusion and dissociation of gas and liquid molecules on silicon, metal, or metal organic frameworks Conductivity of ionic species in solid oxides Ion solvation in liquid mixtures Nuclear structures

Transport in Nanostructures

Author : David K. Ferry,Stephen M. Goodnick,Jonathan Bird
Publisher : Cambridge University Press
Page : 671 pages
File Size : 42,7 Mb
Release : 2009-08-20
Category : Science
ISBN : 9781139480833

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Transport in Nanostructures by David K. Ferry,Stephen M. Goodnick,Jonathan Bird Pdf

The advent of semiconductor structures whose characteristic dimensions are smaller than the mean free path of carriers has led to the development of novel devices, and advances in theoretical understanding of mesoscopic systems or nanostructures. This book has been thoroughly revised and provides a much-needed update on the very latest experimental research into mesoscopic devices and develops a detailed theoretical framework for understanding their behaviour. Beginning with the key observable phenomena in nanostructures, the authors describe quantum confined systems, transmission in nanostructures, quantum dots, and single electron phenomena. Separate chapters are devoted to interference in diffusive transport, temperature decay of fluctuations, and non-equilibrium transport and nanodevices. Throughout the book, the authors interweave experimental results with the appropriate theoretical formalism. The book will be of great interest to graduate students taking courses in mesoscopic physics or nanoelectronics, and researchers working on semiconductor nanostructures.