Computational Modeling Of Spintronic Materials

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Computational Modeling of Spintronic Materials

Author : Xiaotian Wang,Gokhan Surucu,Zhenxiang Cheng
Publisher : Frontiers Media SA
Page : 151 pages
File Size : 54,9 Mb
Release : 2021-03-03
Category : Science
ISBN : 9782889664863

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Computational Modeling of Spintronic Materials by Xiaotian Wang,Gokhan Surucu,Zhenxiang Cheng Pdf

Computational Modeling of Inorganic Nanomaterials

Author : Stefan T. Bromley,Martijn A. Zwijnenburg
Publisher : CRC Press
Page : 423 pages
File Size : 44,5 Mb
Release : 2016-04-06
Category : Science
ISBN : 9781466576445

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Computational Modeling of Inorganic Nanomaterials by Stefan T. Bromley,Martijn A. Zwijnenburg Pdf

Computational Modeling of Inorganic Nanomaterials provides an accessible, unified introduction to a variety of methods for modeling inorganic materials as their dimensions approach the nanoscale. With contributions from a team of international experts, the book guides readers on choosing the most appropriate models and methods for studying the structure and properties (such as atomic structure, optical absorption and luminescence, and electrical and heat transport) of a varied range of inorganic nanomaterial systems. Divided into three sections, the book first covers different types of inorganic nanosystems with increasing dimensionality. The second section explains how to computationally describe properties and phenomena associated with inorganic nanomaterials, including the modeling of melting and phase transitions, crystallization, and thermal, mechanical, optical, and excited state properties. The final section highlights a diverse range of important recent case studies of systems where modeling the properties and structures of inorganic nanomaterials is fundamental to their understanding. These case studies illustrate the use of computational techniques to model nanostructures in a range of applications and environments, from heterogeneous catalysis to astrochemistry. Largely due to their extremely reduced dimensions, inorganic nanomaterials are difficult to characterize accurately in experiments. Computational modeling, therefore, often provides unrivaled, detailed insights to complement and guide experimental research on these small-scale materials. This book shows how computational modeling is critical for understanding inorganic nanomaterials and their future development.

Handbook of Materials Modeling

Author : Wanda Andreoni,Sidney Yip
Publisher : Springer
Page : 2897 pages
File Size : 41,9 Mb
Release : 2020-03-31
Category : Science
ISBN : 3319446797

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Handbook of Materials Modeling by Wanda Andreoni,Sidney Yip Pdf

The Handbook of Materials Modeling, 2nd edition is a six-volume major reference serving a steadily growing community at the intersection of two mainstreams of global research: computational science and materials science and technology. This extensively expanded new edition reflects the significant developments in all aspects of computational materials research over the past decade, featuring progress in simulations at multiple scales and increasingly more realistic materials models. Thematically separated into two mutually dependent sets – “Methods: Theory and Modeling (MTM)” and “Applications: Current and Emerging Materials (ACE)” – the handbook runs the entire gamut from theory and methods to simulations and applications. Readers benefit from its in-depth coverage of a broad methodological spectrum extending from advanced atomistic simulations of rare events to data-driven artificial intelligence strategies for materials informatics in the set MTM, as well as forefront emphasis on materials of far-ranging societal importance such as photovoltaics and energy-relevant oxides, and cutting-edge applications to materials for spintronic devices, graphene, cement, and glasses in the set ACE. The thorough, interconnected coverage of methods and applications, together with a line-up of internationally acclaimed editors and authors, will ensure the Handbook of Material Modeling’s standing as an enduring source of learning and inspiration for a global community of computational materials scientists.

Applied Computational Materials Modeling

Author : Guillermo Bozzolo,Ronald D. Noebe,Phillip B. Abel
Publisher : Springer Science & Business Media
Page : 502 pages
File Size : 52,6 Mb
Release : 2007-12-19
Category : Technology & Engineering
ISBN : 9780387345659

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Applied Computational Materials Modeling by Guillermo Bozzolo,Ronald D. Noebe,Phillip B. Abel Pdf

The scope of this book is to identify and emphasize the successful link between computational materials modeling as a simulation and design tool and its synergistic application to experimental research and alloy development. The book provides a more balanced perspective of the role that computational modeling can play in every day research and development efforts. Each chapter describes one or more particular computational tool and how they are best used.

Spintronics in Nanoscale Devices

Author : Eric R. Hedin,Yong S. Joe
Publisher : CRC Press
Page : 213 pages
File Size : 46,9 Mb
Release : 2016-04-19
Category : Science
ISBN : 9789814411707

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Spintronics in Nanoscale Devices by Eric R. Hedin,Yong S. Joe Pdf

By exploiting the novel properties of quantum dots and nanoscale Aharonov-Bohm rings together with the electronic and magnetic properties of various semiconductor materials and graphene, researchers have conducted numerous theoretical and computational modeling studies and experimental tests that show promising behavior for spintronics applications

Handbook of Materials Modeling

Author : Wanda Andreoni,Sidney Yip
Publisher : Springer
Page : 0 pages
File Size : 55,6 Mb
Release : 2020-03-27
Category : Science
ISBN : 3319469711

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Handbook of Materials Modeling by Wanda Andreoni,Sidney Yip Pdf

The Handbook of Materials Modeling, 2nd edition is a six-volume major reference serving a steadily growing community at the intersection of two mainstreams of global research: computational science and materials science and technology. This extensively expanded new edition reflects the significant developments in all aspects of computational materials research over the past decade, featuring progress in simulations at multiple scales and increasingly more realistic materials models. Thematically separated into two mutually dependent sets – “Methods: Theory and Modeling (MTM)” and “Applications: Current and Emerging Materials (ACE)” – the handbook runs the entire gamut from theory and methods to simulations and applications. Readers benefit from its in-depth coverage of a broad methodological spectrum extending from advanced atomistic simulations of rare events to data-driven artificial intelligence strategies for materials informatics in the set MTM, as well as forefront emphasis on materials of far-ranging societal importance such as photovoltaics and energy-relevant oxides, and cutting-edge applications to materials for spintronic devices, graphene, cement, and glasses in the set ACE. The thorough, interconnected coverage of methods and applications, together with a line-up of internationally acclaimed editors and authors, will ensure the Handbook of Material Modeling’s standing as an enduring source of learning and inspiration for a global community of computational materials scientists.

Computational Modelling of Molecular Nanomagnets

Author : Gopalan Rajaraman
Publisher : Springer Nature
Page : 507 pages
File Size : 44,7 Mb
Release : 2024-07-02
Category : Electronic
ISBN : 9783031310386

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Computational Modelling of Molecular Nanomagnets by Gopalan Rajaraman Pdf

Computational Modeling: From Chemistry To Materials To Biology - Proceedings Of The 25th Solvay Conference On Chemistry

Author : Kurt Wuthrich,Bert Weckhuysen,Laurence Rongy,Anne De Wit
Publisher : World Scientific
Page : 372 pages
File Size : 43,8 Mb
Release : 2020-12-21
Category : Science
ISBN : 9789811228223

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Computational Modeling: From Chemistry To Materials To Biology - Proceedings Of The 25th Solvay Conference On Chemistry by Kurt Wuthrich,Bert Weckhuysen,Laurence Rongy,Anne De Wit Pdf

Chaired by K Wüthrich (Nobel Laureate in Chemistry, 2002) and co-chaired by B Weckhuysen, this by-invitation-only conference has gathered 39 participants — who are leaders in the field of computational modeling and its applications in Chemistry, Material Sciences and Biology. Highlights of the Conference Proceedings are short, prepared statements by all the participants and the records of lively discussions on the current and future perspectives in the field of computational modeling, from chemistry to materials to biology.

Solid State PhysicsMetastable, Spintronics Materials and Mechanics of Deformable Bodies

Author : Subbarayan Sivasankaran,Pramoda Kumar Nayak,Ezgi Günay
Publisher : BoD – Books on Demand
Page : 238 pages
File Size : 48,8 Mb
Release : 2020-05-27
Category : Science
ISBN : 9781838811648

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Solid State PhysicsMetastable, Spintronics Materials and Mechanics of Deformable Bodies by Subbarayan Sivasankaran,Pramoda Kumar Nayak,Ezgi Günay Pdf

This book describes the recent evolution of solid-state physics, which is primarily dedicated to examining the behavior of solids at the atomic scale. It also presents various state-of-the-art reviews and original contributions related to solid-state sciences. The book consists of four sections, namely, solid-state behavior, metastable materials, spintronics materials, and mechanics of deformable bodies. The authors’ contributions relating to solid-state behavior deal with the performance of solid matters pertaining to quantum mechanics, physical metallurgy, and crystallography. The authors’ contributions relating to metastable materials demonstrate the behavior of amorphous/bulk metallic glasses and some nonequilibrium materials. The authors’ contributions relating to spintronic materials explain the principles and equations underlying the physics, transport, and dynamics of spin in solid-state systems. The authors’ contributions relating to the mechanics of deformable bodies deal with applications of numeric and analytic solutions/models for solid-state structures under deformation. Key Features:Issues in solid-state physics, Lagrangian quantum mechanics,Quantum and thermal behavior of HCP crystals,Thermoelectric properties of semiconductors,Bulk metallic glasses and metastable atomic density determination,Applications of spintronics and Heusler alloys, 2D elastostatic, mathematical modeling and dynamic stiffness methods on deformable bodies.

Multiferroic Materials

Author : Junling Wang
Publisher : CRC Press
Page : 392 pages
File Size : 46,7 Mb
Release : 2016-10-14
Category : Science
ISBN : 9781482251548

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Multiferroic Materials by Junling Wang Pdf

"a very detailed book on multiferroics that will be useful for PhD students and researchers interested in this emerging field of materials science" —Dr. Wilfrid Prellier, Research Director, CNRS, Caen, France Multiferroics has emerged as one of the hottest topics in solid state physics in this millennium. The coexistence of multiple ferroic/antiferroic properties makes them useful both for fundamental studies and practical applications such as revolutionary new memory technologies and next-generation spintronics devices. This book provides an historical introduction to the field, followed by a summary of recent progress in single-phase multiferroics (type-I and type-II), multiferroic composites (bulk and nano composites), and emerging areas such as domain walls and vortices. Each chapter addresses potential technological implications. There is also a section dedicated to theoretical approaches, both phenomenological and first-principles calculations.

Physical Methods for Materials Characterisation

Author : Peter E. J. Flewitt,Robert K. Wild
Publisher : CRC Press
Page : 725 pages
File Size : 50,8 Mb
Release : 2017-12-06
Category : Science
ISBN : 9781315363233

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Physical Methods for Materials Characterisation by Peter E. J. Flewitt,Robert K. Wild Pdf

This completely revised and expanded new edition covers the full range of techniques now available for the investigation of materials structure and accurate quantitative determination of microstructural features within materials. It continues to provide the best introductory resource for understanding the interrelationship between microstructure and physical, mechanical, and chemical properties, as well as selection and application of techniques for both basic and applied studies. In particular, changes have been made to reflect developments in analysis of nanoscale and biological materials.

Ferroic Materials Based Technologies

Author : Inamuddin,Tariq Altalhi,Mohammad Abu Jafar Mazumder
Publisher : John Wiley & Sons
Page : 356 pages
File Size : 50,7 Mb
Release : 2024-07-03
Category : Technology & Engineering
ISBN : 9781394238156

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Ferroic Materials Based Technologies by Inamuddin,Tariq Altalhi,Mohammad Abu Jafar Mazumder Pdf

FERROIC MATERIALS-BASED TECHNOLOGIES The book addresses the prospective, relevant, and original research developments in the ferroelectric, magnetic, and multiferroic fields. Ferroic materials have sparked widespread attention because they represent a broad spectrum of elementary physics and are employed in a plethora of fields, including flexible memory, enormous energy harvesting/storage, spintronic functionalities, spin caloritronics, and a large range of other multi-functional devices. With the application of new ferroic materials, strong room-temperature ferroelectricity with high saturation polarization may be established in ferroelectric materials, and magnetism with significant magnetization can be accomplished in magnetic materials. Furthermore, magnetoelectric interaction between ferroelectric and magnetic orderings is high in multiferroic materials, which could enable a wide range of innovative devices. Magnetic, ferroelectric, and multiferroic 2D materials with ultrathin characteristics above ambient temperature are often expected to enable future miniaturization of electronics beyond Moore’s law for energy-efficient nanodevices. This book addresses the prospective, relevant, and original research developments in the ferroelectric, magnetic, and multiferroic fields. Audience The book will interest materials scientists, physicists, and engineers working in ferroic and multiferroic materials.

Skyrmions

Author : J. Ping Liu,Zhidong Zhang,Guoping Zhao
Publisher : CRC Press
Page : 502 pages
File Size : 47,6 Mb
Release : 2016-12-08
Category : Science
ISBN : 9781315284163

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Skyrmions by J. Ping Liu,Zhidong Zhang,Guoping Zhao Pdf

"The book reviews all the aspects of recent developments in research on skyrmions, from the presentation of the observation and characterization techniques to the description of physical properties and expected applications. It will be of great use for all scientists working in this field." – Albert Fert, 2007 Nobel Laureate in Physics (from the Foreword) A skyrmion is a tiny region of reversed magnetization – quasiparticles since they are not present except in a magnetic state, and also give rise to physics that cannot be described by Maxwell’s equations. These particles are fascinating subjects for theoretical and experimental studies. Moreover, as a new type of magnetic domain structure with special topological structures, skyrmions feature outstanding magnetic and transport properties and may well have applications in data storage and other advanced spintronic devices, as readers will see in this book. Chapters address the relationships between physical properties of condensed matter, such as the AB effect, Berry phase effect, quantum Hall effect, and topological insulators. Overall, it provides a timely introduction to the fundamental aspects and possible applications of magnetic skyrmions to an interdisciplinary audience from condensed matter physics, chemistry, and materials science.

Silicon Nanomaterials Sourcebook

Author : Klaus D. Sattler
Publisher : CRC Press
Page : 664 pages
File Size : 53,7 Mb
Release : 2017-07-28
Category : Science
ISBN : 9781498763882

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Silicon Nanomaterials Sourcebook by Klaus D. Sattler Pdf

This comprehensive tutorial guide to silicon nanomaterials spans from fundamental properties, growth mechanisms, and processing of nanosilicon to electronic device, energy conversion and storage, biomedical, and environmental applications. It also presents core knowledge with basic mathematical equations, tables, and graphs in order to provide the reader with the tools necessary to understand the latest technology developments. From low-dimensional structures, quantum dots, and nanowires to hybrid materials, arrays, networks, and biomedical applications, this Sourcebook is a complete resource for anyone working with this materials: Covers fundamental concepts, properties, methods, and practical applications. Focuses on one important type of silicon nanomaterial in every chapter. Discusses formation, properties, and applications for each material. Written in a tutorial style with basic equations and fundamentals included in an extended introduction. Highlights materials that show exceptional properties as well as strong prospects for future applications. Klaus D. Sattler is professor physics at the University of Hawaii, Honolulu, having earned his PhD at the Swiss Federal Institute of Technology (ETH) in Zurich. He was honored with the Walter Schottky Prize from the German Physical Society, and is the editor of the sister work also published by Taylor & Francis, Carbon Nanomaterials Sourcebook, as well as the acclaimed multi-volume Handbook of Nanophysics.

Advanced Thermoelectrics

Author : Zhifeng Ren,Yucheng Lan,Qinyong Zhang
Publisher : CRC Press
Page : 790 pages
File Size : 52,6 Mb
Release : 2017-11-06
Category : Science
ISBN : 9781498765732

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Advanced Thermoelectrics by Zhifeng Ren,Yucheng Lan,Qinyong Zhang Pdf

This book provides an overview on nanostructured thermoelectric materials and devices, covering fundamental concepts, synthesis techniques, device contacts and stability, and potential applications, especially in waste heat recovery and solar energy conversion. The contents focus on thermoelectric devices made from nanomaterials with high thermoelectric efficiency for use in large scale to generate megawatts electricity. Covers the latest discoveries, methods, technologies in materials, contacts, modules, and systems for thermoelectricity. Addresses practical details of how to improve the efficiency and power output of a generator by optimizing contacts and electrical conductivity. Gives tips on how to realize a realistic and usable device or module with attention to large scale industry synthesis and product development. Prof. Zhifeng Ren is M. D. Anderson Professor in the Department of Physics and the Texas Center for Superconductivity at the University of Houston. Prof. Yucheng Lan is an associate professor in Morgan State University. Prof. Qinyong Zhang is a professor in the Center for Advanced Materials and Energy at Xihua University of China.