£90.72

Springer Magnetic Perovskites: Synthesis, Structure and Physical Properties (Engineering Materials)

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Description

Product Description Magnetic perovskite with multi functional properties (magneto-resistive, magneto-dielectric, multiferroics, spintronics, etc.) have attracted increasing attention due to their possible applications towards storage materials and intriguing fundamental Physics. Despite the numerous investigations on multi functional materials in the past few years, a very few magnetic perovskites have been known to realize as ferromagnetic-insulators. In perovskites centred transition metal oxides strong interplay between lattice, charge, spin and/or orbital degrees of freedom provide a fantastic playground to tune their physical properties. The main purpose of this book is to introduce the phenomenon and physics of complex magnetism (phase separation, spin glass, frustrations, etc.) in perovskite manganites and cobaltites via an experimental approach. The book is organized into four chapters; Chap. 1 gives a brief introduction of various interesting phenomena in magnetic perovskites. Chapter 2 describes the results of the investigations on electronic phase separation and glassy ferromagnetism of the hole-doped perovskite manganites and cobaltites. Ordered and disordered effects and related aspects in hole-doped perovskite cobaltites are described in Chap. 3. Finally, in Chap. 4 the bismuth based magnetic perovskite is discussed. Review “This book presents some recent advancements in the area of magnetic perovskites and gives an introduction to the physics of complex magnetism (phase separation, spin glass, frustration). … This book is best suited to graduate students in solid-state physics or chemistry. … it is a passable introduction to magnetic phenomena in perovskites.” (Wilfrid Prellier, MRS Bulletin, cambridge.org, Vol. 41 (12), December, 2016) From the Back Cover Magnetic perovskite with multi functional properties (magneto-resistive, magneto-dielectric, multiferroics, spintronics, etc.) have attracted increasing attention due to their possible applications towards storage materials and intriguing fundamental Physics. Despite the numerous investigations on multi functional materials in the past few years, a very few magnetic perovskites have been known to realize as ferromagnetic-insulators. In perovskites centred transition metal oxides strong interplay between lattice, charge, spin and/or orbital degrees of freedom provide a fantastic playground to tune their physical properties. The main purpose of this book is to introduce the phenomenon and physics of complex magnetism (phase separation, spin glass, frustrations, etc.) in perovskite manganites and cobaltites via an experimental approach. The book is organized into four chapters; Chap. 1 gives a brief introduction of various interesting phenomena in magnetic perovskites. Chapter 2 describes the results of the investigations on electronic phase separation and glassy ferromagnetism of the hole-doped perovskite manganites and cobaltites. Ordered and disordered effects and related aspects in hole-doped perovskite cobaltites are described in Chap. 3. Finally, in Chap. 4 the bismuth based magnetic perovskite is discussed. About the Author Asish K. Kundu (Ph.D., JNCASR, Bangalore) is at present Associate Professor of Physics & Ex-Head of Natural Sciences Discipline at the IIITDM, Jabalpur. He is a Visiting Research Faculty and CNRS research fellow at CRISMAT Laboratory, France. Also, he was a visiting researcher at Angstrom Laboratory, Sweden and a DRDO scientist at Solid State Physics Laboratory, Delhi. He is a recipient of UGC-CSIR Junior Research Fellowship in the year 2001 and also awarded BOYSCAST Fellowship for the year 2011 by DST Government of India.  His research in perovskites includes magnetic materials, magnetoresistance materials and multiferroicity of transition metal oxides. He has published more than 40 papers and two books in these areas.

Product Specifications

Format
hardcover
Domain
Amazon UK
Release Date
27 February 2016
Listed Since
15 December 2015

Barcode

No barcode data available

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