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Coupled Multiscale Simulation and Optimization in Nanoelectronics, Michael G?nther


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Автор: Michael G?nther
Название:  Coupled Multiscale Simulation and Optimization in Nanoelectronics
ISBN: 9783662466711
Издательство: Springer
Классификация:




ISBN-10: 3662466716
Обложка/Формат: Hardcover
Страницы: 565
Вес: 0.99 кг.
Дата издания: 26.06.2015
Серия: The European Consortium for Mathematics in Industry
Язык: English
Размер: 234 x 156 x 32
Основная тема: Mathematics
Ссылка на Издательство: Link
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Поставляется из: Германии
Описание:

Part I Introduction: 1 The COMSON Project: Michael Gьnther and Uwe Feldmann.- Part II Partial Differential Algebraic Equations: 2 PDAE Modeling and Discretization: Giuseppe Alм, Massimiliano Culpo, Roland Pulch, Vittorio Romano and Sebastian Schцps.- 3 Simulation of Coupled PDAEs - Dynamic Iteration and Multirate Simulation: Giuseppe Alм, Andreas Bartel, Michael Gьnther, Vittorio Romano and Sebastian Schцps.- Part III Model Order Reduction: 4 Model Order Reduction - Methods, Concepts and Properties: Athanasios C. Antoulas, Roxana Ionutiu, Nelson Martins, E. Jan W. ter Maten, Kasra Mohaghegh, Roland Pulch, Joost Rommes, Maryam Saadvandi and Michael Striebel.- 5 Parameterized Model Order Reduction: Gabriela Ciuprina, Jorge Fernбndez Villena, Daniel Ioan, Zoran Ilievski, Sebastian Kula, E. Jan W. ter Maten, Kasra Mohaghegh, Roland Pulch, Wil H.A. Schilders, L. Miguel Silveira, Alexandra, Stefбnescu and Michael Striebel.- 6 Advanced topics in Model Order Reduction: Davit Harutyunyan, Roxana Ionutiu, E. Jan W. ter Maten, Joost Rommes, Wil H.A. Schilders and Michael Striebel.- Part IV Optimization: 7 Optimization Methods and Applications to microelectronics CAD: Salvatore Rinaudo, Valeria Cinnera Martino, Franco Fiorante, Giovanni Stracquadanio and Giuseppe Nicosia.- Part V COMSON Methodology: 8 COMSON Demonstrator Platform: Georg Denk, Tamara Bechtold, Massimiliano Culpo, Carlo de Falco, and Alexander Rusakov.- 9 eLearning in Industrial Mathematics with applications to Nanoelectronics: Giuseppe Alм, Eleonora Bilotta, Lorella Gabriele, Pietro Pantano, Josй Sepъlveda, Rocco Servidio, and Alexander Vasenev.- Index.




Lessons From Nanoelectronics: A New Perspective On Transport

Автор: Datta Supriyo
Название: Lessons From Nanoelectronics: A New Perspective On Transport
ISBN: 9814335290 ISBN-13(EAN): 9789814335294
Издательство: World Scientific Publishing
Цена: 5544.00 р.
Наличие на складе: Есть у поставщика Поставка под заказ.

Описание:

Everyone is familiar with the amazing performance of a modern smartphone, powered by a billion-plus nanotransistors, each having an active region that is barely a few hundred atoms in length.

These lecture notes are about a less appreciated by-product of the microelectronics revolution, namely the deeper understanding of current flow, and device operation that it has enabled, which forms the basis for a new approach to transport problems.

The book assumes very little background beyond linear algebra and differential equations, and is intended to be accessible to anyone in any branch of science or engineering.

Readers are encouraged to visit the website http: //nanohub.org/groups/lnebook to access revisions, corrections, video lectures, tutorials, quizzes and also to join a Q&A forum based on questions from readers.

Material Design of Metal/Oxide Interfaces for Nanoelectronics Applications

Автор: Takahiro Nagata
Название: Material Design of Metal/Oxide Interfaces for Nanoelectronics Applications
ISBN: 4431548491 ISBN-13(EAN): 9784431548492
Издательство: Springer
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Цена: 11179.00 р.
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Описание: Oxide materials are good candidates for replacing Si devices, which are increasingly reaching their performance limits, since the former offer a range of unique properties, due to their composition, design and/or doping techniques.

Silicon Nanoelectronics

Автор: Oda
Название: Silicon Nanoelectronics
ISBN: 0824726332 ISBN-13(EAN): 9780824726331
Издательство: Taylor&Francis
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Цена: 33686.00 р.
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Описание: Technological advancement in chip development, based on the downscaling of the feature size of transistors, is threatening to come to a standstill as we approach the limits of conventional scaling. This work takes a look at the development of novel devices and materials that hold great promise for the creation of still smaller and powerful chips.

Coupled Multiscale Simulation and Optimization in Nanoelectronics

Автор: Michael G?nther
Название: Coupled Multiscale Simulation and Optimization in Nanoelectronics
ISBN: 3662519704 ISBN-13(EAN): 9783662519707
Издательство: Springer
Рейтинг:
Цена: 15372.00 р.
Наличие на складе: Есть у поставщика Поставка под заказ.

Описание:

Part I Introduction: 1 The COMSON Project: Michael Gьnther and Uwe Feldmann.- Part II Partial Differential Algebraic Equations: 2 PDAE Modeling and Discretization: Giuseppe Alм, Massimiliano Culpo, Roland Pulch, Vittorio Romano and Sebastian Schцps.- 3 Simulation of Coupled PDAEs - Dynamic Iteration and Multirate Simulation: Giuseppe Alм, Andreas Bartel, Michael Gьnther, Vittorio Romano and Sebastian Schцps.- Part III Model Order Reduction: 4 Model Order Reduction - Methods, Concepts and Properties: Athanasios C. Antoulas, Roxana Ionutiu, Nelson Martins, E. Jan W. ter Maten, Kasra Mohaghegh, Roland Pulch, Joost Rommes, Maryam Saadvandi and Michael Striebel.- 5 Parameterized Model Order Reduction: Gabriela Ciuprina, Jorge Fernбndez Villena, Daniel Ioan, Zoran Ilievski, Sebastian Kula, E. Jan W. ter Maten, Kasra Mohaghegh, Roland Pulch, Wil H.A. Schilders, L. Miguel Silveira, Alexandra, Stefбnescu and Michael Striebel.- 6 Advanced topics in Model Order Reduction: Davit Harutyunyan, Roxana Ionutiu, E. Jan W. ter Maten, Joost Rommes, Wil H.A. Schilders and Michael Striebel.- Part IV Optimization: 7 Optimization Methods and Applications to microelectronics CAD: Salvatore Rinaudo, Valeria Cinnera Martino, Franco Fiorante, Giovanni Stracquadanio and Giuseppe Nicosia.- Part V COMSON Methodology: 8 COMSON Demonstrator Platform: Georg Denk, Tamara Bechtold, Massimiliano Culpo, Carlo de Falco, and Alexander Rusakov.- 9 eLearning in Industrial Mathematics with applications to Nanoelectronics: Giuseppe Alм, Eleonora Bilotta, Lorella Gabriele, Pietro Pantano, Josй Sepъlveda, Rocco Servidio, and Alexander Vasenev.- Index.

2D Nanoelectronics

Автор: Mircea Dragoman; Daniela Dragoman
Название: 2D Nanoelectronics
ISBN: 3319484354 ISBN-13(EAN): 9783319484358
Издательство: Springer
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Цена: 15372.00 р.
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Описание: This book is dedicated to the new two-dimensional one-atomic-layer-thick materials such as graphene, metallic chalcogenides, silicene and other 2D materials. The book describes their main physical properties and applications in nanoelctronics, photonics, sensing and computing. A large part of the book deals with graphene and its amazing physical properties. Another important part of the book deals with semiconductor monolayers such as MoS2 with impressive applications in photonics, and electronics. Silicene and germanene are the atom-thick counterparts of silicon and germanium with impressive applications in electronics and photonics which are still unexplored. Consideration of two-dimensional electron gas devices conclude the treatment. The physics of 2DEG is explained in detail and the applications in THz and IR region are discussed.Both authors are working currently on these 2D materials developing theory and applications.

Nanoelectronics: A Molecular View

Автор: Ghosh Avik
Название: Nanoelectronics: A Molecular View
ISBN: 9813146222 ISBN-13(EAN): 9789813146228
Издательство: World Scientific Publishing
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Цена: 10296.00 р.
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Описание: 'This is one of the best available graduate-level textbooks on electronic transport at the nanoscale. Its unique feature is providing a thorough and completely self-contained treatment of several theoretical formalisms for treating the transport problem. As such, the book is useful not only for the graduate students working in the field of nanoscale electrical transport, but also for the researchers who wish to expand their knowledge of various fundamental issues associated with this rapidly developing field. Of particular note are deep physical insights accompanying the rigorous mathematical derivations in each of the chapters, as well as the clear statement of all the approximations involved in a particular theoretical formalism. This winning combination makes the book very accessible to a reader with basic knowledge of quantum mechanics, solid state theory and thermodynamics/statistical mechanics. I give this book the highest recommendation.' [Read Full Review]Serfei A EgorovUniveristy of Virginia, USAThis book is aimed at senior undergraduates, graduate students and researchers interested in quantitative understanding and modeling of nanomaterial and device physics. With the rapid slow-down of semiconductor scaling that drove information technology for decades, there is a pressing need to understand and model electron flow at its fundamental molecular limits. The purpose of this book is to enable such a deconstruction needed to design the next generation memory, logic, sensor and communication elements. Through numerous case studies and topical examples relating to emerging technology, this book connects 'top down' classical device physics taught in electrical engineering classes with 'bottom up' quantum and many-body transport physics taught in physics and chemistry. The book assumes no more than a nodding acquaintance with quantum mechanics, in addition to knowledge of freshman level mathematics. Segments of this book are useful as a textbook for a course in nano-electronics.

Nanoelectronics: A Molecular View

Автор: Ghosh Avik
Название: Nanoelectronics: A Molecular View
ISBN: 9813144491 ISBN-13(EAN): 9789813144491
Издательство: World Scientific Publishing
Рейтинг:
Цена: 19483.00 р.
Наличие на складе: Есть у поставщика Поставка под заказ.

Описание: 'This is one of the best available graduate-level textbooks on electronic transport at the nanoscale. Its unique feature is providing a thorough and completely self-contained treatment of several theoretical formalisms for treating the transport problem. As such, the book is useful not only for the graduate students working in the field of nanoscale electrical transport, but also for the researchers who wish to expand their knowledge of various fundamental issues associated with this rapidly developing field. Of particular note are deep physical insights accompanying the rigorous mathematical derivations in each of the chapters, as well as the clear statement of all the approximations involved in a particular theoretical formalism. This winning combination makes the book very accessible to a reader with basic knowledge of quantum mechanics, solid state theory and thermodynamics/statistical mechanics. I give this book the highest recommendation.' [Read Full Review]Serfei A EgorovUniveristy of Virginia, USAThis book is aimed at senior undergraduates, graduate students and researchers interested in quantitative understanding and modeling of nanomaterial and device physics. With the rapid slow-down of semiconductor scaling that drove information technology for decades, there is a pressing need to understand and model electron flow at its fundamental molecular limits. The purpose of this book is to enable such a deconstruction needed to design the next generation memory, logic, sensor and communication elements. Through numerous case studies and topical examples relating to emerging technology, this book connects 'top down' classical device physics taught in electrical engineering classes with 'bottom up' quantum and many-body transport physics taught in physics and chemistry. The book assumes no more than a nodding acquaintance with quantum mechanics, in addition to knowledge of freshman level mathematics. Segments of this book are useful as a textbook for a course in nano-electronics.

The Physics of Nanoelectronics

Автор: Heikkila, Tero T.
Название: The Physics of Nanoelectronics
ISBN: 0199592446 ISBN-13(EAN): 9780199592449
Издательство: Oxford Academ
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Цена: 16236.00 р.
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Описание: This book provides an introduction to phenomena and models in nanoelectronics. It starts from the basics, but also introduces topics of recent interest, such as superconducting qubits, graphene, and quantum nanoelectromechanics.

Numerical Methods for Time-Resolved Quantum Nanoelectronics

Автор: Joseph Weston
Название: Numerical Methods for Time-Resolved Quantum Nanoelectronics
ISBN: 3319636901 ISBN-13(EAN): 9783319636900
Издательство: Springer
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Цена: 15372.00 р.
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Описание: This thesis develops novel numerical techniques for simulating quantum transport in the time domain and applies them to pertinent physical systems such as flying qubits in electronic interferometers and superconductor/semiconductor junctions hosting Majorana bound states (the key ingredient for topological quantum computing).

Graphene Nanoelectronics

Автор: Raghu Murali
Название: Graphene Nanoelectronics
ISBN: 1493941550 ISBN-13(EAN): 9781493941551
Издательство: Springer
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Цена: 15672.00 р.
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Описание: Graphene Nanoelectronics describes how graphene can be used as a replacement for Silicon technology, in addition to the potential benefits of using graphene in a variety of electronic applications. Readers will find recent advances in the field and various methods for graphene growth.

Nanotechnology and Nanoelectronics

Автор: Wolfgang Fahrner
Название: Nanotechnology and Nanoelectronics
ISBN: 3642061273 ISBN-13(EAN): 9783642061271
Издательство: Springer
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Цена: 18284.00 р.
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Описание: Vice versa, - chanical shifts in the nanometer range demand piezoelectric-operated actuators. So- times, the complete description of a device calls for discussion of its inherent - tential;

Nanoelectronics and Nanosystems

Автор: Goser
Название: Nanoelectronics and Nanosystems
ISBN: 3540404430 ISBN-13(EAN): 9783540404439
Издательство: Springer
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Цена: 9141.00 р.
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Описание: Nanoelectronics provides an accessible introduction for prospective and practicing electronic engineers, computer scientists and physicists. The overview covers all aspects from underlying technologies to circuits and systems. The challenge of nanoelectronics is not only to manufacture minute structures but also to develop innovative systems for effective integration of the billions of devices. On the system level, various architectures are presented and important features of systems, such as design strategies, processing power, and reliability are discussed. Many specific technologies are presented, including molecular devices, quantum electronic devices, resonant tunnelling devices, single electron devices, superconducting devices, and even devices for DNA and quantum computing. The book also compares these devices with current silicon technologies and discusses limits of electronics and the future of nanosystems.


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