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Published by Oxford University Press, Oxford, 2012
ISBN 10: 0199584125 ISBN 13: 9780199584123
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Language: English
Published by Oxford University Press, Oxford, 2012
ISBN 10: 0199584125 ISBN 13: 9780199584123
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Language: English
Published by Oxford University Press, 2018
ISBN 10: 0199584125 ISBN 13: 9780199584123
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Language: English
Published by Oxford University Press, 2012
ISBN 10: 0199584125 ISBN 13: 9780199584123
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Published by Oxford University Press, 2012
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Published by Materials Research Society, 2011
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Published by Oxford University Press, 2012
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Language: English
Published by Oxford University Press, 2012
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Published by Oxford University Press, 2012
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Published by Oxford University Press OUP, 2012
ISBN 10: 0199584125 ISBN 13: 9780199584123
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Language: English
Published by Oxford University Press, 2012
ISBN 10: 0199584125 ISBN 13: 9780199584123
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Published by Oxford University Press, 2012
ISBN 10: 0199584125 ISBN 13: 9780199584123
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Published by Oxford University Press,, 2012
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Published by Oxford University Press, 2012
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ISBN 10: 0199584125 ISBN 13: 9780199584123
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Published by Oxford University Press, Oxford, 2012
ISBN 10: 0199584125 ISBN 13: 9780199584123
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Hardcover. Condition: new. Hardcover. 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 madepossible the experimental realization of such oxide heterostructures, promising novel functionalities and device concepts. The book consists of chapters on some of the keyinnovations 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. This book explores the rapidly developing field of oxide thin-films and heterostructures, which exhibit unusual physical properties interesting from the fundamental point of view and for device application. The chapters, written by world-recognized scientists, discuss topics that represent some of the key innovations in the field over recent years. This item is printed on demand. Shipping may be from our UK warehouse or from our Australian or US warehouses, depending on stock availability.
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Buch. Condition: Neu. Multifunctional Oxide Heterostructures | Evgeny Y. Tsymbal | Buch | Englisch | 2018 | ACADEMIC | EAN 9780199584123 | Verantwortliche Person für die EU: Libri GmbH, Europaallee 1, 36244 Bad Hersfeld, gpsr[at]libri[dot]de | Anbieter: preigu Print on Demand.
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Buch. Condition: Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - 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 madepossible 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 novelapplications.