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Multiphysics in nanostructures
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SpringerLink (Online service)
Multiphysics in nanostructures
Record Type:
Electronic resources : Monograph/item
Title/Author:
Multiphysics in nanostructuresby Yoshitaka Umeno ... [et al.].
other author:
Umeno, Yoshitaka.
Published:
Tokyo :Springer Japan :2017.
Description:
x, 214 p. :ill. (some col.), digital ;24 cm.
Contained By:
Springer eBooks
Subject:
Nanostructured materials.
Online resource:
http://dx.doi.org/10.1007/978-4-431-56573-4
ISBN:
9784431565734$q(electronic bk.)
Multiphysics in nanostructures
Multiphysics in nanostructures
[electronic resource] /by Yoshitaka Umeno ... [et al.]. - Tokyo :Springer Japan :2017. - x, 214 p. :ill. (some col.), digital ;24 cm. - Nanostructure science and technology,1571-5744. - Nanostructure science and technology..
Introduction -- Methodology of Quantum-Mechanics/Atomic Simulations -- Ideal Strength in Low-dimensional Nanostructures -- Strain Engineering on Nano-Semiconductors -- Ferroelectric Nanostructures -- Magnetism in Nanostructures -- Multiferroic Nanostructures -- Ferroic Nano-Metamaterials and Composites.
This is the first book to systematically review and summarize the recent rapid advances and varied results of multiphysics in nanoscale materials including elastic strain engineering. This book comprises topics on remarkable properties of multiphysics in low-dimensional nanoscale components from first-principles density-functional theory (or tight binding) calculations, which are essential for the nonlinear multiphysics couplings due to quantum mechanical effects. This volume provides a clear point of view and insight into the varied work done in diverse fields and disciplines and promotes a fundamental to state-of-the-art understanding of properties of multiphysics. Because the novelty and complexity of mechanical and multiphysical properties of low-dimensional nanostructures originate from combinations of outer shapes (e.g., films, wires, tubes, and dots) and inner understructures (e.g., grain boundaries, domain walls, vacancies, and impurities), the nanostructures are classified into fundamental elements, and the properties of each element and their interplay are reviewed for systematic, in-depth understanding. This book points out a new direction for multiphysics in nanostructures, which opens the door both to exploiting and to designing novel functionalities at the nanoscale. Readers will be interested in this rapidly expanding multidisciplinary work and will be motivated to enter this promising research area.
ISBN: 9784431565734$q(electronic bk.)
Standard No.: 10.1007/978-4-431-56573-4doiSubjects--Topical Terms:
216041
Nanostructured materials.
LC Class. No.: TA418.9.N35
Dewey Class. No.: 620.115
Multiphysics in nanostructures
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Introduction -- Methodology of Quantum-Mechanics/Atomic Simulations -- Ideal Strength in Low-dimensional Nanostructures -- Strain Engineering on Nano-Semiconductors -- Ferroelectric Nanostructures -- Magnetism in Nanostructures -- Multiferroic Nanostructures -- Ferroic Nano-Metamaterials and Composites.
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This is the first book to systematically review and summarize the recent rapid advances and varied results of multiphysics in nanoscale materials including elastic strain engineering. This book comprises topics on remarkable properties of multiphysics in low-dimensional nanoscale components from first-principles density-functional theory (or tight binding) calculations, which are essential for the nonlinear multiphysics couplings due to quantum mechanical effects. This volume provides a clear point of view and insight into the varied work done in diverse fields and disciplines and promotes a fundamental to state-of-the-art understanding of properties of multiphysics. Because the novelty and complexity of mechanical and multiphysical properties of low-dimensional nanostructures originate from combinations of outer shapes (e.g., films, wires, tubes, and dots) and inner understructures (e.g., grain boundaries, domain walls, vacancies, and impurities), the nanostructures are classified into fundamental elements, and the properties of each element and their interplay are reviewed for systematic, in-depth understanding. This book points out a new direction for multiphysics in nanostructures, which opens the door both to exploiting and to designing novel functionalities at the nanoscale. Readers will be interested in this rapidly expanding multidisciplinary work and will be motivated to enter this promising research area.
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based on 0 review(s)
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