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Nanoscale Phase Separation and Colossal Magnetoresistance

Nanoscale Phase Separation and Colossal Magnetoresistance PDF Author: Elbio Dagotto
Publisher: Springer Science & Business Media
ISBN: 366205244X
Category : Science
Languages : en
Pages : 465

Book Description
The study of the spontaneous formation of nanostructures in single crystals of several compounds is now a major area of research in strongly correlated electrons. These structures appear to originate in the competition of phases. The book addresses nanoscale phase separation, focusing on the manganese oxides known as manganites that have the colossal magnetoresistance (CMR) effect of potential relevance for device applications. It is argued that the nanostructures are at the heart of the CMR phenomenon. The book contains updated information on manganite research directed to experts, both theorists and experimentalists. However, graduate students or postdocs will find considerable introductory material, including elements of computational physics.

Nanoscale Phase Separation and Colossal Magnetoresistance

Nanoscale Phase Separation and Colossal Magnetoresistance PDF Author: Elbio Dagotto
Publisher: Springer Science & Business Media
ISBN: 366205244X
Category : Science
Languages : en
Pages : 465

Book Description
The study of the spontaneous formation of nanostructures in single crystals of several compounds is now a major area of research in strongly correlated electrons. These structures appear to originate in the competition of phases. The book addresses nanoscale phase separation, focusing on the manganese oxides known as manganites that have the colossal magnetoresistance (CMR) effect of potential relevance for device applications. It is argued that the nanostructures are at the heart of the CMR phenomenon. The book contains updated information on manganite research directed to experts, both theorists and experimentalists. However, graduate students or postdocs will find considerable introductory material, including elements of computational physics.

Colossal Magnetoresistance and Phase Separation in Magnetic Semiconductors

Colossal Magnetoresistance and Phase Separation in Magnetic Semiconductors PDF Author: Eduard L Nagaev
Publisher: World Scientific
ISBN: 1783261331
Category : Science
Languages : en
Pages : 476

Book Description
Colossal magnetoresistance materials, to which manganites and conventional ferromagnetic semiconductors belong, draw great attention because of their intriguing physical properties and the excellent prospects for their practical applications in electronic devices. In addition, magnetic semiconductors are basic materials for high-temperature conductors, and it is impossible to construct a theory of the latter without elucidating properties of the former. This book presents theoretical and experimental results on manganites and conventional magnetic semiconductors, with emphasis on the former. It is addressed mainly to researchers dealing with manganites or high-temperature superconductors, but is also useful for undergraduate and graduate students. Contents:Introduction and Necessary Information about Non-magnetic Semiconductors and Insulating Magnetic SystemsPrinciples of Theory of Conducting MagneticNon-degenerate Ferromagnetic SemiconductorsNon-degenerate Antiferromagnetic Semiconductors and Self-trapped StatesDegenerate Ferromagnetic SemiconductorsDegenerate Antiferromagnetic Semiconductors and Phase SeparationLanthanum ManganitesOther ManganitesSpecific Effects and Theory of Manganites Readership: Advanced graduate students, lecturers and researchers in condensed matter physics, superconductivity and magnetic materials. Keywords:Magnetic Semiconductors;Magnetic Polaron (Ferron);Electronic Phase Separation;Manganites;Colossal Magnetoresistance;Solid State Physics

Physics of Manganites

Physics of Manganites PDF Author: T.A. Kaplan
Publisher: Springer Science & Business Media
ISBN: 0306470918
Category : Science
Languages : en
Pages : 296

Book Description
This series of books, which is published at the rate of about one per year, addresses fundamental problems in materials science. The contents cover a broad range of topics from small clusters of atoms to engineering materials and involves chemistry, physics, materials science and engineering, with length scales ranging from Ångstroms up to millimeters. The emphasis is on basic science rather than on applications. Each book focuses on a single area of current interest and brings together leading experts to give an up to date discussion of their work and the work of others. Each article contains enough references that the interested reader can access the relevant literature. Thanks are given to the Center for Fundamental Materials Research at Michigan State University for supporting this series. M. F. Thorpe, Series Editor E mail: thorpe@pa. msu. edu V PREFACE This book records invited lectures given at the workshop on Physics of Manganites, held at Michigan State University, July 26 29, 1998. Doped manganites are an interesting class of compounds that show both metal insulator and ferromagnetic to paramagnetic transitions at the same temperature. This was discovered in the early 1950s by Jonker and van Santen and basic theoretical ideas were developed by Zener (1951), Anderson and Hasegawa (1955), and deGennes (1960) to explain these transitions and related interesting observations.

Colossal Magnetoresistive Manganites

Colossal Magnetoresistive Manganites PDF Author: Tapan Chatterji
Publisher: Springer Science & Business Media
ISBN: 9401512442
Category : Science
Languages : en
Pages : 455

Book Description
The physics of transition metal oxides has become a central topic of interest to condensed-matter scientists ever since high temperature superconductivity was discovered in hole-doped cuprates with perovskite-like structures. Although the renewed interest in hole-doped perovskite manganites following the discovery of their colossal magnetoresistance (CMR) properties, began in 1993 about a decade after the discovery of high temperature superconductivity, their first investigation started as early as 1950 and basic theoretical ideas were developed during 1951-1960. Experience in sample preparation and characterization, and in growth of single crystals and epitaxial thin films, gained during the research on high temperature superconductors, and the development of theoretical tools, were very efficiently used in research on CMR manganites. In early nineties it appeared to many condensed matter physicists that although the problem of high temperature superconductivity is a difficult one to solve, a quantitative understanding of CMR phenomena might be well within reach. This book is intended to be an account of the latest developments in the phys ics of CMR manganites. When I planned this book back in 2000, I thought that research on the physics of CMR manganites would be more or less consolidated by the time this would be published. I was obviously very optimistic indeed. We are now in 2003 and we still do not have a quantitative understanding of the central CMR effect. Meanwhile the field has expanded. It is still a very active field of research on both the experimental and theoretical fronts.

Multifunctional Oxide Heterostructures

Multifunctional Oxide Heterostructures PDF Author: Evgeny Y. Tsymbal
Publisher: OUP Oxford
ISBN: 0191642223
Category : Science
Languages : en
Pages : 416

Book Description
This book is devoted to the rapidly developing field of oxide thin-films and heterostructures. Oxide materials combined with atomic-scale precision in a heterostructure exhibit an abundance of macroscopic physical properties involving the strong coupling between the electronic, spin, and structural degrees of freedom, and the interplay between magnetism, ferroelectricity, and conductivity. Recent advances in thin-film deposition and characterization techniques made possible the experimental realization of such oxide heterostructures, promising novel functionalities and device concepts. The book consists of chapters on some of the key innovations in the field over recent years, including strongly correlated oxide heterostructures, magnetoelectric coupling and multiferroic materials, thermoelectric phenomena, and two-dimensional electron gases at oxide interfaces. The book covers the core principles, describes experimental approaches to fabricate and characterize oxide heterostructures, demonstrates new functional properties of these materials, and provides an overview of novel applications.

Trends in Chemistry of Materials

Trends in Chemistry of Materials PDF Author:
Publisher:
ISBN: 9814470155
Category :
Languages : en
Pages :

Book Description


Trends in Chemistry of Materials

Trends in Chemistry of Materials PDF Author: Chintamani Nagesa Ramachandra Rao
Publisher: World Scientific
ISBN: 9812833838
Category : Science
Languages : en
Pages : 635

Book Description
In this collection, the author has compiled a set of his papers representing some of the highlights of materials chemistry. It features a section on oxidic materials, which includes high-temperature superconductivity, colossal magnetoresistance, electronic phase separation and multiferroics. The author has also included novel methods for making gallium nitride, boron nitride and such materials, by using precursors and the urea decomposition route. Moreover, there is a section dealing with open-framework and hybrid materials of which the latter has a great future since one can make use of the rigidity of inorganic structures and the functionality and flexibility of the organic residues to design materials with novel properties.

Electronic Phase Separation in Magnetic and Superconducting Materials

Electronic Phase Separation in Magnetic and Superconducting Materials PDF Author: Maxim Yu. Kagan
Publisher: Springer
ISBN: 9783031554667
Category : Science
Languages : en
Pages : 0

Book Description
This book focuses on nanoscale electronic phase separation in a wide class of different materials, especially in strongly correlated electron systems. It features an extensive review of the field of inhomogeneous spin and charge states in condensed matter physics while delivering a topical and timely discussion of a wide range of recent advances in electronic phase separation. It describes the formation of different types of nanoscale ferromagnetic metallic droplets in antiferromagnetically ordered, charge-ordered, or orbitally-ordered insulating matrices, as well as the colossal magnetoresistance effect and tunneling electron transport in the nonmetallic phase-separated state of complex magnetic oxides. It also discusses compounds with spin-state transitions, inhomogeneously phase-separated states in strongly correlated multiband systems, and the electron polaron effect, paying special attention to systems with imperfect Fermi surface-nesting such as chromium alloys, iron-based pnictides, and AA-stacked graphene bilayers. The authors investigate also the formation of order parameter clusters and insulator-superconductor transition in different superconducting systems including bismuth oxides, two-dimensional films in the presence of strong disorder, as well as inhomogeneous Fermi-Bose mixtures in Aharonov-Bohm rings with a superconducting bridge in a topologically nontrivial state. This book is a valuable resource for researchers involved in theoretical and experimental studies of strongly correlated materials, such as magnetic semiconductors, Fermi-Bose mixtures, and twisted bilayer graphene.

Phase Separation in Soft Matter Physics

Phase Separation in Soft Matter Physics PDF Author: Pulat K. Khabibullaev
Publisher: Springer Science & Business Media
ISBN: 3662092786
Category : Science
Languages : en
Pages : 190

Book Description
This is the first monograph devoted to investigation of the most complex physical processes of soft systems, including a wide class of solutions. It blends modern theoretical understanding and experimental results, proposing new methods and models for the description of several soft systems.

Colossal Magnetoresistance and Phase Separation in Magnetic Semiconductors

Colossal Magnetoresistance and Phase Separation in Magnetic Semiconductors PDF Author: Ėduard Leonovich Nagaev
Publisher: World Scientific Publishing Company
ISBN: 9781860942952
Category : Science
Languages : en
Pages : 457

Book Description
This book presents theoretical and experimental results on manganites and conventional magnetic semiconductors, with emphasis on the former. It is addressed mainly to researchers dealing with manganites or high-temperature superconductors, but is also useful for undergraduate and graduate students.