Quantum Transport Calculations For Nanosystems

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Quantum Transport Calculations for Nanosystems

Author : Kenji Hirose,Nobuhiko Kobayashi
Publisher : CRC Press
Page : 532 pages
File Size : 49,7 Mb
Release : 2014-04-11
Category : Science
ISBN : 9789814267595

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Quantum Transport Calculations for Nanosystems by Kenji Hirose,Nobuhiko Kobayashi Pdf

As electric devices become smaller and smaller, transport simulations based on the quantum mechanics become more and more important. There are currently numerous textbooks on the basic concepts of quantum transport, but few present calculation methods in detail. This book provides various quantum transport simulation methods and shows applications

Theory of Quantum Transport at Nanoscale

Author : Dmitry Ryndyk
Publisher : Springer
Page : 246 pages
File Size : 45,6 Mb
Release : 2015-12-08
Category : Science
ISBN : 9783319240886

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Theory of Quantum Transport at Nanoscale by Dmitry Ryndyk Pdf

This book is an introduction to a rapidly developing field of modern theoretical physics – the theory of quantum transport at nanoscale. The theoretical methods considered in the book are in the basis of our understanding of charge, spin and heat transport in nanostructures and nanostructured materials and are widely used in nanoelectronics, molecular electronics, spin-dependent electronics (spintronics) and bio-electronics. The book is based on lectures for graduate and post-graduate students at the University of Regensburg and the Technische Universität Dresden (TU Dresden). The first part is devoted to the basic concepts of quantum transport: Landauer-Büttiker method and matrix Green function formalism for coherent transport, Tunneling (Transfer) Hamiltonian and master equation methods for tunneling, Coulomb blockade, vibrons and polarons. The results in this part are obtained as possible without sophisticated techniques, such as nonequilibrium Green functions, which are considered in detail in the second part. A general introduction into the nonequilibrium Green function theory is given. The approach based on the equation-of-motion technique, as well as more sophisticated one based on the Dyson-Keldysh diagrammatic technique are presented. The main attention is paid to the theoretical methods able to describe the nonequilibrium (at finite voltage) electron transport through interacting nanosystems, specifically the correlation effects due to electron-electron and electron-vibron interactions.

Quantum Transport

Author : Yuli V. Nazarov,Yaroslav M. Blanter
Publisher : Cambridge University Press
Page : 591 pages
File Size : 55,9 Mb
Release : 2009-05-28
Category : Science
ISBN : 9780521832465

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Quantum Transport by Yuli V. Nazarov,Yaroslav M. Blanter Pdf

Quantum transport is a diverse field, sometimes combining seemingly contradicting concepts - quantum and classical, conduction and insulating - within a single nanodevice. Quantum transport is an essential and challenging part of nanoscience, and understanding its concepts and methods is vital to the successful fabrication of devices at the nanoscale. This textbook is a comprehensive introduction to the rapidly developing field of quantum transport. The authors present the comprehensive theoretical background, and explore the groundbreaking experiments that laid the foundations of the field. Ideal for graduate students, each section contains control questions and exercises to check readers' understanding of the topics covered. Its broad scope and in-depth analysis of selected topics will appeal to researchers and professionals working in nanoscience.

Nonequilibrium Quantum Transport Physics in Nanosystems

Author : Felixberto Alcudia Buot
Publisher : Unknown
Page : 0 pages
File Size : 50,6 Mb
Release : 2009
Category : Mesoscopic phenomena (Physics)
ISBN : OCLC:1347684488

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Nonequilibrium Quantum Transport Physics in Nanosystems by Felixberto Alcudia Buot Pdf

Atomistic Simulation of Quantum Transport in Nanoelectronic Devices

Author : Yu Zhu,Lei Liu
Publisher : World Scientific
Page : 436 pages
File Size : 50,6 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.

Dissipative Quantum Mechanics of Nanostructures

Author : Andrei D. Zaikin,Dmitry Golubev
Publisher : CRC Press
Page : 957 pages
File Size : 51,6 Mb
Release : 2019-05-24
Category : Science
ISBN : 9781000023664

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Dissipative Quantum Mechanics of Nanostructures by Andrei D. Zaikin,Dmitry Golubev Pdf

Continuing miniaturization of electronic devices, together with the quickly growing number of nanotechnological applications, demands a profound understanding of the underlying physics. Most of the fundamental problems of modern condensed matter physics involve various aspects of quantum transport and fluctuation phenomena at the nanoscale. In nanostructures, electrons are usually confined to a limited volume and interact with each other and lattice ions, simultaneously suffering multiple scattering events on impurities, barriers, surface imperfections, and other defects. Electron interaction with other degrees of freedom generally yields two major consequences, quantum dissipation and quantum decoherence. In other words, electrons can lose their energy and ability for quantum interference even at very low temperatures. These two different, but related, processes are at the heart of all quantum phenomena discussed in this book. This book presents copious details to facilitate the understanding of the basic physics behind a result and the learning to technically reproduce the result without delving into extra literature. The book subtly balances the description of theoretical methods and techniques and the display of the rich landscape of the physical phenomena that can be accessed by these methods. It is useful for a broad readership ranging from master’s and PhD students to postdocs and senior researchers.

Quantum Transport in Mesoscopic Systems

Author : Pier A. Mello,Narendra Kumar
Publisher : Oxford University Press, USA
Page : 428 pages
File Size : 43,8 Mb
Release : 2004
Category : Science
ISBN : 0198525826

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Quantum Transport in Mesoscopic Systems by Pier A. Mello,Narendra Kumar Pdf

This text presents the statistical theory of wave scattering and quantum transport in complex - chaotic and disordered - systems.

Quantum Transport in Submicron Devices

Author : Wim Magnus,Wim Schoenmaker
Publisher : Springer Science & Business Media
Page : 270 pages
File Size : 54,9 Mb
Release : 2012-12-06
Category : Technology & Engineering
ISBN : 9783642561337

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Quantum Transport in Submicron Devices by Wim Magnus,Wim Schoenmaker Pdf

The aim of this book is to resolve the problem of electron and hole transport with a coherent and consistent theory that is relevant to the understanding of transport phenomena in submicron devices. Along the road, readers encounter landmarks in theoretical physics as the authors guide them through the strong and weak aspects of various hypotheses.

Topics In Nanoscience - Part Ii: Quantized Structures, Nanoelectronics, Thin Films Nanosystems: Typical Results And Future

Author : Wolfram Schommers
Publisher : World Scientific
Page : 406 pages
File Size : 47,9 Mb
Release : 2021-12-17
Category : Science
ISBN : 9789811243882

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Topics In Nanoscience - Part Ii: Quantized Structures, Nanoelectronics, Thin Films Nanosystems: Typical Results And Future by Wolfram Schommers Pdf

With the development of the scanning tunneling microscope, nanoscience became an important discipline. Single atoms could be manipulated in a controlled manner, and it became possible to change matter at its 'ultimate' level; it is the level on which the properties of matter emerge. This possibility enables to construct and to produce devices, materials, etc. with very small sizes and completely new properties. That opens up new perspectives for technology and is in particular relevant in connection with nano-engineering.Nanosystems are unimaginably small and very fast. No doubt, this is an important characteristic. But there is another feature, possibly more relevant, in connection with nanoscience and nanotechnology. The essential point here is that we work at the 'ultimate level'. This is the smallest level at which the properties of our world emerge, at which functional matter can exist. In particular, at this level biological individuality comes into existence. This situation can be expressed in absolute terms: This is not only the strongest material ever made, this is the strongest material it will ever be possible to make (D Ratner and M Ratner, Nanotechnology and Homeland Security). This is a very general statement. All aspects of matter are concerned here. Through the variation of the composition various forms of matter emerge with different items.Nanosystems are usually small, but they offer nevertheless the possibility to vary the structure of atomic (molecular) ensembles, creating a diversity of new material-specific properties. A large variety of experimental possibilities come into play and flexible theoretical tools are needed at the basic level. This is reflected in the different disciplines: In nanoscience and nanotechnology we have various directions: Materials science, functional nanomaterials, nanoparticles, food chemistry, medicine with brain research, quantum and molecular computing, bioinformatics, magnetic nanostructures, nano-optics, nano-electronics, etc.The properties of matter, which are involved within these nanodisciplines, are ultimate in character, i.e., their characteristic properties come into existence at this level. The book is organized in this respect.

Quantum Transport in Mesoscopic Systems

Author : David Sánchez,Michael Moskalets
Publisher : MDPI
Page : 426 pages
File Size : 52,5 Mb
Release : 2021-01-06
Category : Mathematics
ISBN : 9783039433667

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Quantum Transport in Mesoscopic Systems by David Sánchez,Michael Moskalets Pdf

Mesoscopic physics deals with systems larger than single atoms but small enough to retain their quantum properties. The possibility to create and manipulate conductors of the nanometer scale has given birth to a set of phenomena that have revolutionized physics: quantum Hall effects, persistent currents, weak localization, Coulomb blockade, etc. This Special Issue tackles the latest developments in the field. Contributors discuss time-dependent transport, quantum pumping, nanoscale heat engines and motors, molecular junctions, electron–electron correlations in confined systems, quantum thermo-electrics and current fluctuations. The works included herein represent an up-to-date account of exciting research with a broad impact in both fundamental and applied topics.

Quantum Transport Theory

Author : Jorgen Rammer
Publisher : CRC Press
Page : 540 pages
File Size : 44,6 Mb
Release : 2018-05-04
Category : Science
ISBN : 9780429971389

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Quantum Transport Theory by Jorgen Rammer Pdf

This book provides an introduction to transport theory, the kinetic equation approach and shows the utility of Feynman diagrams in non-equilibrium quantum statistical mechanics. It is helpful for a wider audience than students of condensed matter physics and physicists in general.

An Introduction to Quantum Transport in Semiconductors

Author : David K. Ferry
Publisher : CRC Press
Page : 230 pages
File Size : 40,8 Mb
Release : 2017-12-14
Category : Science
ISBN : 9781351796378

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An Introduction to Quantum Transport in Semiconductors by David K. Ferry Pdf

Throughout their college career, most engineering students have done problems and studies that are basically situated in the classical world. Some may have taken quantum mechanics as their chosen field of study. This book moves beyond the basics to highlight the full quantum mechanical nature of the transport of carriers through nanoelectronic structures. The book is unique in that addresses quantum transport only in the materials that are of interest to microelectronics—semiconductors, with their variable densities and effective masses. The author develops Green’s functions starting from equilibrium Green’s functions and going through modern time-dependent approaches to non-equilibrium Green’s functions, introduces relativistic bands for graphene and topological insulators and discusses the quantum transport changes that these bands induce, and discusses applications such as weak localization and phase breaking processes, resonant tunneling diodes, single-electron tunneling, and entanglement. Furthermore, he also explains modern ensemble Monte Carlo approaches to simulation of various approaches to quantum transport and the hydrodynamic approaches to quantum transport. All in all, the book describes all approaches to quantum transport in semiconductors, thus becoming an essential textbook for advanced graduate students in electrical engineering or physics.

Quantum Transport in Ultrasmall Devices

Author : David K. Ferry,Harold L. Grubin,Carlo Jacoboni,A.-P. Jauho
Publisher : Springer Science & Business Media
Page : 542 pages
File Size : 54,7 Mb
Release : 2012-12-06
Category : Science
ISBN : 9781461519676

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Quantum Transport in Ultrasmall Devices by David K. Ferry,Harold L. Grubin,Carlo Jacoboni,A.-P. Jauho Pdf

The operation of semiconductor devices depends upon the use of electrical potential barriers (such as gate depletion) in controlling the carrier densities (electrons and holes) and their transport. Although a successful device design is quite complicated and involves many aspects, the device engineering is mostly to devise a "best" device design by defIning optimal device structures and manipulating impurity profIles to obtain optimal control of the carrier flow through the device. This becomes increasingly diffIcult as the device scale becomes smaller and smaller. Since the introduction of integrated circuits, the number of individual transistors on a single chip has doubled approximately every three years. As the number of devices has grown, the critical dimension of the smallest feature, such as a gate length (which is related to the transport length defIning the channel), has consequently declined. The reduction of this design rule proceeds approximately by a factor of 1. 4 each generation, which means we will be using 0. 1-0. 15 ). lm rules for the 4 Gb chips a decade from now. If we continue this extrapolation, current technology will require 30 nm design rules, and a cell 3 2 size

Quantum Transport

Author : Juli V. Natzarov,Yaroslav M. Blanter
Publisher : Unknown
Page : 128 pages
File Size : 50,6 Mb
Release : 2009
Category : Electron transport
ISBN : 051164681X

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Quantum Transport by Juli V. Natzarov,Yaroslav M. Blanter Pdf