Magnetoelectric and Multiferroic Properties in Layered 3d Transition Metal Oxides

Magnetoelectric and Multiferroic Properties in Layered 3d Transition Metal Oxides
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Book Synopsis Magnetoelectric and Multiferroic Properties in Layered 3d Transition Metal Oxides by : Jungmin Hwang

Download or read book Magnetoelectric and Multiferroic Properties in Layered 3d Transition Metal Oxides written by Jungmin Hwang and published by . This book was released on 2012 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt: ABSTRACT: Functional ferroelectric and magnetic materials have played an important role of modern technology in the sensor or storage device industries. Ferroelectricity and ferromagnetism emerge from different origins. However, it is discovered that these two seemingly unrelated phenomena can actually coexist in materials called multiferroics. Since current trends toward device miniaturization have increased interests in combining electronic and magnetic properies into multifunctional materials, multiferroics have attracted great attention. Ferromagnetic ferroelectric multiferroics are especially fascinating not only because they have both ferroic properties, but also because of the magnetoelectric coupling which leads the interaction between the magnetic and electric polarization. Recent theoretical breakthroughs in understanding the coexistence of magnetic and electrical ordering have regenerated a great interests in research of such magnetoelectric multiferroics. The long-sought control of electric polarization by magneticfields was recently discovered in `frustrated magnets', for example the perovskites RMnO3, RMn2O5 (R- rare earth elements), Ni3V2O8, delafossite CuFeO2, spinel CoCr2O4, MnWO4, etc. In this dissertation, I have explored several magnetoelectric materials and multiferroics, which show significant magnetoelectric interactions between electric and magnetic orderings. The objects of my projects are focused on understanding the origins of such magnetoelectric couplings and establishing the magnetic/electric phase diagrams and the spin structures. I believe that my works would help to understand the mechanisms of magnetoelectric effects and multiferroics.


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