Linear And Nonlinear Electron Transport In Solids


Linear And Nonlinear Electron Transport In Solids
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Linear And Nonlinear Electron Transport In Solids


Linear And Nonlinear Electron Transport In Solids
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Author : J. Devreeese
language : en
Publisher: Springer Science & Business Media
Release Date : 2013-06-29

Linear And Nonlinear Electron Transport In Solids written by J. Devreeese and has been published by Springer Science & Business Media this book supported file pdf, txt, epub, kindle and other format this book has been release on 2013-06-29 with Science categories.




Linear And Nonlinear Electron Transport In Solids


Linear And Nonlinear Electron Transport In Solids
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Author : J. Devreeese
language : en
Publisher:
Release Date : 2014-01-15

Linear And Nonlinear Electron Transport In Solids written by J. Devreeese and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2014-01-15 with categories.




Quantum Kinetics In Transport And Optics Of Semiconductors


Quantum Kinetics In Transport And Optics Of Semiconductors
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Author : Hartmut Haug
language : en
Publisher: Springer Science & Business Media
Release Date : 2007-12-10

Quantum Kinetics In Transport And Optics Of Semiconductors written by Hartmut Haug and has been published by Springer Science & Business Media this book supported file pdf, txt, epub, kindle and other format this book has been release on 2007-12-10 with Science categories.


The state-of-the-art of quantum transport and quantum kinetics in semiconductors, plus the latest applications, are covered in this monograph. Since the publishing of the first edition in 1996, the nonequilibrium Green function technique has been applied to a large number of new research topics, and the revised edition introduces the reader to many of these areas. This book is both a reference work for researchers and a self-tutorial for graduate students.



Non Linear Transport Properties Of Hybrid Nanoelectronic Devices


Non Linear Transport Properties Of Hybrid Nanoelectronic Devices
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Author : Henning Soller
language : en
Publisher: Logos Verlag Berlin GmbH
Release Date : 2013-05-23

Non Linear Transport Properties Of Hybrid Nanoelectronic Devices written by Henning Soller and has been published by Logos Verlag Berlin GmbH this book supported file pdf, txt, epub, kindle and other format this book has been release on 2013-05-23 with Technology & Engineering categories.


The subject of this thesis is the study of hybrid nanoelectronic components involving superconductors or excitonic systems. The behavior of such electronic devices is relevant both for the miniaturization of electronics as well as for possible future on-chip quantum computation. In order to characterise them the cumulant generating function of charge transfer is calculated. First, quantum point contacts between (conventional und unconventional) superconductors, ferromagnets and semiconductors are investigated. The focus of interest are transport processes involving non-trivial correlated electronic states such as Cooper pairs, excitons or Majorana fermions. In the second part quantum impurities are included and the effects of onsite Coulomb and electron-phonon interaction are discussed. Using these results the possibility to witness entanglement in superconducting beamsplitters is demonstrated. The results are compared both to different theoretical approaches and experimental data.



Granular Nanoelectronics


Granular Nanoelectronics
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Author : David K. Ferry
language : en
Publisher: Springer Science & Business Media
Release Date : 2013-12-14

Granular Nanoelectronics written by David K. Ferry and has been published by Springer Science & Business Media this book supported file pdf, txt, epub, kindle and other format this book has been release on 2013-12-14 with Science categories.


The technological means now exists for approaching the fundamentallimiting scales of solid state electronics in which a single carrier can, in principle, represent a single bit in an information flow. In this light, the prospect of chemically, or biologically, engineered molccular-scale structures which might support information processing functions has enticed workers for many years. The one common factor in all suggested molecular switches, ranging from the experimentally feasible proton-tunneling structure, to natural systems such as the micro-tubule, is that each proposed structure deals with individual information carrying entities. Whereas this future molecular electronics faces enormous technical challenges, the same Iimit is already appearing in existing semiconducting quantum wires and small tunneling structures, both superconducting and normal meta! devices, in which the motion of a single eh arge through the tunneling barrier can produce a sufficient voltage change to cut-off further tunneling current. We may compare the above situation with today's Si microelectronics, where each bit is encoded as a very !arge number, not necessarily fixed, of electrons within acharge pulse. The associated reservoirs and sinks of charge carriers may be profitably tapped and manipulated to proviele macro-currents which can be readily amplified or curtailed. On the other band, modern semiconductor ULSI has progressed by adopting a linear scaling principle to the down-sizing of individual semiconductor devices.



Strongly Correlated Systems Coherence And Entanglement


Strongly Correlated Systems Coherence And Entanglement
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Author : J M P Carmelo
language : en
Publisher: World Scientific
Release Date : 2007-07-12

Strongly Correlated Systems Coherence And Entanglement written by J M P Carmelo and has been published by World Scientific this book supported file pdf, txt, epub, kindle and other format this book has been release on 2007-07-12 with Technology & Engineering categories.


This volume presents a collection of review papers on recent work in the connected areas of strongly correlated systems, the effects of coherence on macroscopic systems, and entanglement in quantum systems. These areas have attracted considerable interest due to their complexity and associated unexpected nontrivial phenomena, and also due to their potential applications in various fields, from materials science to information technology. The coverage includes strongly correlated electronic systems such as low-dimensional complex materials, ordered and disordered spin systems, and aspects of the physics of manganites and graphene, both in equilibrium and far from equilibrium.



Semiconductors And Semimetals


Semiconductors And Semimetals
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Author :
language : en
Publisher: Academic Press
Release Date : 1993-08-10

Semiconductors And Semimetals written by and has been published by Academic Press this book supported file pdf, txt, epub, kindle and other format this book has been release on 1993-08-10 with Technology & Engineering categories.


Semiconductors and Semimetals



Report Of Nrl Progress


Report Of Nrl Progress
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Author : Naval Research Laboratory (U.S.)
language : en
Publisher:
Release Date : 1976

Report Of Nrl Progress written by Naval Research Laboratory (U.S.) and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 1976 with Naval research categories.




Theory Of Transport Properties Of Semiconductor Nanostructures


Theory Of Transport Properties Of Semiconductor Nanostructures
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Author : Eckehard Schöll
language : en
Publisher: Springer Science & Business Media
Release Date : 2013-11-27

Theory Of Transport Properties Of Semiconductor Nanostructures written by Eckehard Schöll and has been published by Springer Science & Business Media this book supported file pdf, txt, epub, kindle and other format this book has been release on 2013-11-27 with Technology & Engineering categories.


Recent advances in the fabrication of semiconductors have created almost un limited possibilities to design structures on a nanometre scale with extraordinary electronic and optoelectronic properties. The theoretical understanding of elec trical transport in such nanostructures is of utmost importance for future device applications. This represents a challenging issue of today's basic research since it requires advanced theoretical techniques to cope with the quantum limit of charge transport, ultrafast carrier dynamics and strongly nonlinear high-field ef fects. This book, which appears in the electronic materials series, presents an over view of the theoretical background and recent developments in the theory of electrical transport in semiconductor nanostructures. It contains 11 chapters which are written by experts in their fields. Starting with a tutorial introduction to the subject in Chapter 1, it proceeds to present different approaches to transport theory. The semiclassical Boltzmann transport equation is in the centre of the next three chapters. Hydrodynamic moment equations (Chapter 2), Monte Carlo techniques (Chapter 3) and the cellular au tomaton approach (Chapter 4) are introduced and illustrated with applications to nanometre structures and device simulation. A full quantum-transport theory covering the Kubo formalism and nonequilibrium Green's functions (Chapter 5) as well as the density matrix theory (Chapter 6) is then presented.



Quantum Transport In Semiconductors


Quantum Transport In Semiconductors
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Author : David K. Ferry
language : en
Publisher: Springer Science & Business Media
Release Date : 2013-06-29

Quantum Transport In Semiconductors written by David K. Ferry and has been published by Springer Science & Business Media this book supported file pdf, txt, epub, kindle and other format this book has been release on 2013-06-29 with Science categories.


The majority of the chapters in this volume represent a series of lectures. that were given at a workshop on quantum transport in ultrasmall electron devices, held at San Miniato, Italy, in March 1987. These have, of course, been extended and updated during the period that has elapsed since the workshop was held, and have been supplemented with additional chapters devoted to the tunneling process in semiconductor quantum-well structures. The aim of this work is to review and present the current understanding in nonequilibrium quantum transport appropriate to semiconductors. Gen erally, the field of interest can be categorized as that appropriate to inhomogeneous transport in strong applied fields. These fields are most likely to be strongly varying in both space and time. Most of the literature on quantum transport in semiconductors (or in metallic systems, for that matter) is restricted to the equilibrium approach, in which spectral densities are maintained as semiclassical energy conserving delta functions, or perhaps incorporating some form of collision broadening through a Lorentzian shape, and the distribution functions are kept in the equilibrium Fermi-Dirac form. The most familiar field of nonequilibrium transport, at least for the semiconductor world, is that of hot carriers in semiconductors.