Quantum Mechanics For Nanostructures

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Quantum Mechanics for Nanostructures

Author : Vladimir Vasilʹevich Mitin,Dmitry I. Sementsov,Nizami Z. Vagidov
Publisher : Cambridge University Press
Page : 449 pages
File Size : 42,6 Mb
Release : 2010-05-20
Category : Science
ISBN : 9780521763660

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Quantum Mechanics for Nanostructures by Vladimir Vasilʹevich Mitin,Dmitry I. Sementsov,Nizami Z. Vagidov Pdf

Textbook introducing engineers to quantum mechanics and nanostructures, covering the fundamentals and applications to nanoscale materials and nanodevices.

Dissipative Quantum Mechanics of Nanostructures

Author : Andrei D. Zaikin,Dmitry Golubev
Publisher : CRC Press
Page : 957 pages
File Size : 55,5 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 Networks

Author : Günter Mahler,Volker A. Weberruß
Publisher : Springer Science & Business Media
Page : 403 pages
File Size : 53,9 Mb
Release : 2013-03-09
Category : Science
ISBN : 9783662031766

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Quantum Networks by Günter Mahler,Volker A. Weberruß Pdf

The focus here is on density matrix theory cast into a representation - SU(n) algebra - since this is particularly adapted to describing networks of quasi-molecular subsystems. This approach allows an understanding of how classical properties emerge within a quantum mechanical world and how non-classical features survive in a classical environment. The authors introduce and discuss non-classical aspects such as single-particle and multi-particle coherence such that a picture evolves of how these features are generated and destroyed by interactions with the environment. The outcome is a description of how the dynamics of individual quantum systems are interrelated with information dynamics.

Nanostructures

Author : Christophe Jean Delerue,Michel Lannoo
Publisher : Springer Science & Business Media
Page : 313 pages
File Size : 43,9 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.

Quantum Mechanics with Applications to Nanotechnology and Information Science

Author : Yehuda B. Band,Yshai Avishai
Publisher : Academic Press
Page : 993 pages
File Size : 51,6 Mb
Release : 2013-01-10
Category : Science
ISBN : 9780444537874

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Quantum Mechanics with Applications to Nanotechnology and Information Science by Yehuda B. Band,Yshai Avishai Pdf

Quantum mechanics transcends and supplants classical mechanics at the atomic and subatomic levels. It provides the underlying framework for many subfields of physics, chemistry and materials science, including condensed matter physics, atomic physics, molecular physics, quantum chemistry, particle physics, and nuclear physics. It is the only way we can understand the structure of materials, from the semiconductors in our computers to the metal in our automobiles. It is also the scaffolding supporting much of nanoscience and nanotechnology. The purpose of this book is to present the fundamentals of quantum theory within a modern perspective, with emphasis on applications to nanoscience and nanotechnology, and information-technology. As the frontiers of science have advanced, the sort of curriculum adequate for students in the sciences and engineering twenty years ago is no longer satisfactory today. Hence, the emphasis on new topics that are not included in older reference texts, such as quantum information theory, decoherence and dissipation, and on applications to nanotechnology, including quantum dots, wires and wells. This book provides a novel approach to Quantum Mechanics whilst also giving readers the requisite background and training for the scientists and engineers of the 21st Century who need to come to grips with quantum phenomena The fundamentals of quantum theory are provided within a modern perspective, with emphasis on applications to nanoscience and nanotechnology, and information-technology Older books on quantum mechanics do not contain the amalgam of ideas, concepts and tools necessary to prepare engineers and scientists to deal with the new facets of quantum mechanics and their application to quantum information science and nanotechnology As the frontiers of science have advanced, the sort of curriculum adequate for students in the sciences and engineering twenty years ago is no longer satisfactory today There are many excellent quantum mechanics books available, but none have the emphasis on nanotechnology and quantum information science that this book has

Exotic States in Quantum Nanostructures

Author : Sarben Sarkar
Publisher : Springer Science & Business Media
Page : 320 pages
File Size : 47,9 Mb
Release : 2013-11-11
Category : Science
ISBN : 9789401599740

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Exotic States in Quantum Nanostructures by Sarben Sarkar Pdf

Mesoscopic physics has made great strides in the last few years. It is an area of research that is attractive to many graduate students of theoretical condensed matter physics. The techniques that are needed to understand it go beyond the conventional perturbative approaches that still form the bulk of the graduate lectures that are given to students. Even when the non-perturbative techniques are presented, they often are presented within an abstract context. It is important to have lectures given by experts in the field, which present both theory and experiment in an illuminating and inspiring way, so that the impact of new methodology on novel physics is clear. It is an apt time to have such a volume since the field has reached a level of maturity. The pedagogical nature of the articles and the variety of topics makes it an important resource for newcomers to the field. The topics range from the newly emerging area of quantum computers and quantum information using Josephson junctions to the formal mathematical methods of conformal field theory which are applied to the understanding of Luttinger liquids. Electrons which interact strongly can give rise to non-trivial ground states such as superconductivity, quantum Hall states and magnetism. Both their theory and application are discussed in a pedagogical way for quantum information in mesoscopic superconducting devices, skyrmions and magnetism in two dimensional electron gases, transport in quantum wires, metal-insulator transitions and spin electronics.

Quantum Wells, Wires and Dots

Author : Paul Harrison,Alex Valavanis
Publisher : John Wiley & Sons
Page : 626 pages
File Size : 43,7 Mb
Release : 2016-06-13
Category : Science
ISBN : 9781118923368

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Quantum Wells, Wires and Dots by Paul Harrison,Alex Valavanis Pdf

Quantum Wells, Wires and Dots provides all the essential information, both theoretical and computational, to develop an understanding of the electronic, optical and transport properties of these semiconductor nanostructures. The book will lead the reader through comprehensive explanations and mathematical derivations to the point where they can design semiconductor nanostructures with the required electronic and optical properties for exploitation in these technologies. This fully revised and updated 4th edition features new sections that incorporate modern techniques and extensive new material including: Properties of non-parabolic energy bands Matrix solutions of the Poisson and Schrödinger equations Critical thickness of strained materials Carrier scattering by interface roughness, alloy disorder and impurities Density matrix transport modelling Thermal modelling Written by well-known authors in the field of semiconductor nanostructures and quantum optoelectronics, this user-friendly guide is presented in a lucid style with easy to follow steps, illustrative examples and questions and computational problems in each chapter to help the reader build solid foundations of understanding to a level where they can initiate their own theoretical investigations. Suitable for postgraduate students of semiconductor and condensed matter physics, the book is essential to all those researching in academic and industrial laboratories worldwide. Instructors can contact the authors directly ([email protected] / [email protected]) for Solutions to the problems.

Optical Generation and Control of Quantum Coherence in Semiconductor Nanostructures

Author : Gabriela Slavcheva,Philippe Roussignol
Publisher : Springer Science & Business Media
Page : 338 pages
File Size : 41,8 Mb
Release : 2010-06-01
Category : Science
ISBN : 9783642124914

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Optical Generation and Control of Quantum Coherence in Semiconductor Nanostructures by Gabriela Slavcheva,Philippe Roussignol Pdf

The fundamental concept of quantum coherence plays a central role in quantum physics, cutting across disciplines of quantum optics, atomic and condensed matter physics. Quantum coherence represents a universal property of the quantum s- tems that applies both to light and matter thereby tying together materials and p- nomena. Moreover, the optical coherence can be transferred to the medium through the light-matter interactions. Since the early days of quantum mechanics there has been a desire to control dynamics of quantum systems. The generation and c- trol of quantum coherence in matter by optical means, in particular, represents a viable way to achieve this longstanding goal and semiconductor nanostructures are the most promising candidates for controllable quantum systems. Optical generation and control of coherent light-matter states in semiconductor quantum nanostructures is precisely the scope of the present book. Recently, there has been a great deal of interest in the subject of quantum coh- ence. We are currently witnessing parallel growth of activities in different physical systems that are all built around the central concept of manipulation of quantum coherence. The burgeoning activities in solid-state systems, and semiconductors in particular, have been strongly driven by the unprecedented control of coherence that previously has been demonstrated in quantum optics of atoms and molecules, and is now taking advantage of the remarkable advances in semiconductor fabrication technologies. A recent impetus to exploit the coherent quantum phenomena comes from the emergence of the quantum information paradigm.

Introduction to Quantum Nanotechnology

Author : Duncan G. Steel
Publisher : Oxford University Press
Page : 352 pages
File Size : 54,5 Mb
Release : 2021-04-30
Category : Technology & Engineering
ISBN : 9780192647979

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Introduction to Quantum Nanotechnology by Duncan G. Steel Pdf

Quantum is rapidly emerging as a game-changer in technology. The end of Moore's Law for exponential growth is rapidly approaching and engineers and physicist alike are looking at moving past the classical limitations of modern technology and are exploring the new opportunities that quantum behaviour creates in sensing, metrology, communications and information processing. This book serves as introduction to quantum theory with emphasis on dynamical behaviour and applications of quantum mechanics, with minimal discussion of formalism. The goal is to help students begin to learn the tools for a quantum toolbox they will need to work in this area. It is aimed at upper level undergraduates and first year graduate students and assumes the reader has not had any training in quantum mechanics beyond what might be encountered in two semesters of introductory physics. The language of quantum is mathematics and builds on what is covered in typically the first two years. The first six chapters introduce Schrödinger's equation and develop the quantized description of common systems that exist in real space like a vibrator, nano-particles, atoms, crystals, etc. Beginning in Ch. 7 and for the remaining nine chapters, the focus is primarily on dynamical behaviour and how to think about real quantum systems. Spin, the quantized electromagnetic field, dissipation, loss and spontaneous emission, are discussed as well as quantum optics and the operator equations for common two-state systems such as the quantum flip flop and the density matrix equations. The book is structured so that a two semester course sequence is possible or a single semester course with options discussed in the preface to set different learning objectives. Even a one semester course based on this text covers much more material than a typical upper quantum course for undergraduates in physics, but at the expense of more detailed discussions about solutions to various differential equations such as for angular momentum and the hydrogen atom or band theory for semiconductors.

Problem Solving in Quantum Mechanics

Author : Marc Cahay,Supriyo Bandyopadhyay
Publisher : John Wiley & Sons
Page : 372 pages
File Size : 51,9 Mb
Release : 2017-05-30
Category : Science
ISBN : 9781118988756

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Problem Solving in Quantum Mechanics by Marc Cahay,Supriyo Bandyopadhyay Pdf

This topical and timely textbook is a collection of problems for students, researchers, and practitioners interested in state-of-the-art material and device applications in quantum mechanics. Most problem are relevant either to a new device or a device concept or to current research topics which could spawn new technology. It deals with the practical aspects of the field, presenting a broad range of essential topics currently at the leading edge of technological innovation. Includes discussion on: Properties of Schroedinger Equation Operators Bound States in Nanostructures Current and Energy Flux Densities in Nanostructures Density of States Transfer and Scattering Matrix Formalisms for Modelling Diffusive Quantum Transport Perturbation Theory, Variational Approach and their Applications to Device Problems Electrons in a Magnetic or Electromagnetic Field and Associated Phenomena Time-dependent Perturbation Theory and its Applications Optical Properties of Nanostructures Problems in Quantum Mechanics: For Material Scientists, Applied Physicists and Device Engineers is an ideal companion to engineering, condensed matter physics or materials science curricula. It appeals to future and present engineers, physicists, and materials scientists, as well as professionals in these fields needing more in-depth understanding of nanotechnology and nanoscience.

Nanoscale Physics for Materials Science

Author : Takaaki Tsurumi,Hiroyuki Hirayama,Martin Vacha,Tomoyasu Taniyama
Publisher : CRC Press
Page : 287 pages
File Size : 45,7 Mb
Release : 2009-12-10
Category : Science
ISBN : 9781439800607

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Nanoscale Physics for Materials Science by Takaaki Tsurumi,Hiroyuki Hirayama,Martin Vacha,Tomoyasu Taniyama Pdf

Although there are many books available on the preparation, properties, and characterization of nanomaterials, few provide an interdisciplinary account of the physical phenomena that govern the novel properties of nanomaterials. Addressing this shortfall, Nanoscale Physics for Materials Science covers fundamental cross-disciplinary concepts in materials science and engineering. It presents a comprehensive description of the physical phenomena and changes that can be expected when macroscopically sized materials are reduced to the nanometer level. The text is divided according to physical phenomena and interactions. After reviewing the necessary theoretical background, the authors address the electrical, optical, and magnetic properties as functions of size and distance. They discuss the energy spectrum, the charging effect, tunneling phenomena, electronically induced stable nanostructures, absorption and scattering, electromagnetic interactions, magnetism, ferromagnetic domain-wall-related phenomena, and spin transport in magnetic nanostructures. Problem sets are included at the end of each chapter. Providing an excellent treatment of physical phenomena not covered in similar books, this text explores the electrical, optical, and magnetic properties of materials at the nanoscale level. It delves into the dramatic physical changes that occur on scales where the quantum nature of objects starts dominating their properties.

Quantum Wells, Wires and Dots

Author : Paul Harrison
Publisher : John Wiley & Sons
Page : 511 pages
File Size : 49,5 Mb
Release : 2005-10-31
Category : Science
ISBN : 9780470010815

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Quantum Wells, Wires and Dots by Paul Harrison Pdf

Quantum Wells, Wires and Dots Second Edition: Theoretical andComputational Physics of Semiconductor Nanostructures providesall the essential information, both theoretical and computational,for complete beginners to develop an understanding of how theelectronic, optical and transport properties of quantum wells,wires and dots are calculated. Readers are lead through a series ofsimple theoretical and computational examples giving solidfoundations from which they will gain the confidence to initiatetheoretical investigations or explanations of their own. Emphasis on combining the analysis and interpretation ofexperimental data with the development of theoretical ideas Complementary to the more standard texts Aimed at the physics community at large, rather than just thelow-dimensional semiconductor expert The text present solutions for a large number of realsituations Presented in a lucid style with easy to follow steps related toaccompanying illustrative examples

Introduction to Nanoscience

Author : Stuart Lindsay
Publisher : Oxford University Press
Page : 470 pages
File Size : 49,8 Mb
Release : 2010
Category : Science
ISBN : 9780199544219

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Introduction to Nanoscience by Stuart Lindsay Pdf

Accompanying disc contains Powerpoint slides, animations and texts in various formats.

Nanostructures and Nanotechnology

Author : Douglas Natelson
Publisher : Cambridge University Press
Page : 641 pages
File Size : 48,6 Mb
Release : 2015-06-18
Category : Science
ISBN : 9780521877008

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Nanostructures and Nanotechnology by Douglas Natelson Pdf

A carefully developed textbook focusing on the fundamental principles of nanoscale science and nanotechnology.