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The magnetoelectric (ME) coupling of cylindrical trilayered composite was studied in this paper. The Ni-lead zirconate titanate (PZT)-Ni trilayered cylindrical composite was synthesized by electro-deposition. The maximum ME voltage…

Materials Science · Physics 2009-11-13 D. A. Pan , Y. Bai , W. Y. Chu , L. J. Qiao

Magnetoelectric interactions in bilayers of magnetostrictive and piezoelectric phases are mediated by mechanical deformation. Here we discuss the theory and companion data for magnetoelectric (ME) coupling at electromechanical resonance…

Materials Science · Physics 2009-11-10 M. I. Bichurin , D. A. Fillipov , V. M. Petrov , V. M. Laletsin , G. Srinivasan

We have investigated the magnetoelectric (ME) effect in layered composite rings subjected to circumferential AC magnetic fields and DC magnetic fields in radial, axial or circumferential directions. Bilayer samples were obtained combining…

Materials Science · Physics 2016-06-09 V. Loyau , V. Morin , J. Fortineau , M. Lobue , F. Mazaleyrat

The observation of strong magnetoelectric effects is reported in thick film bilayers and multilayers of ferrite-lead titanate zirconate (PZT) and lanthanum nanganite-PZT. The ferrites used in our studies included pure and zinc substituted…

Materials Science · Physics 2007-05-23 G. Srinivasan , C. P. DeVreugd , R. Hayes , M. I. Bichurin , V. M. Petrov

We report the high strength of magnetoelectric (ME) coupling of trilayered composites prepared by electro-deposition. The ME coupling of Ni-lead zirconate titanate (PZT)-Ni trilayered structure was measured ranged from1 kHz to 120 kHz. The…

Materials Science · Physics 2009-11-13 D. A. Pan , Y. Bai , W. Y. Chu , L. J. Qiao

We report the use of high magnetomechanical coupling ferrites in magnetoelectric (ME) layered composites. Bilayer samples combining $(Ni_{0.973} Co_{0.027})_{1-x} Zn_x Fe_2 O_4$ ferrites ($x = 0-0.5$) synthesized by non conventional…

Materials Science · Physics 2016-10-02 V. Loyau , V. Morin , G. Chaplier , M. Lobue , F. Mazaleyrat

Magnetoelectric (ME) effect has been studied in a structure of a magnetostrictive TbFe2 alloy, two piezoelectric Pb(Zr,Ti)O3 (PZT) ceramics, and two nonmagnetic flakes. The ME coupling originates from the magnetic-mechanical-electric…

Materials Science · Physics 2012-10-30 K. Bi , Y. G. Wang , D. A. Pan , W. Wu

Mechanical strain mediated magnetoelectric effects are studied in bilayers and trilayers of piezoelectric quartz and magnetostrictive permendur (P), an alloy of Fe-Co-V. It is shown that the magneto-electric voltage coefficient (MEVC),…

Materials Science · Physics 2015-06-05 G. Sreenivasulu , V. M. Petrov , L. Y. Fetisov , Y. K. Fetisov , G. Srinivasan

Low frequency magnetoelectric (ME) coupling has been investigated in bulk and multilayers of cobalt zinc ferrite, Co1-xZnxFe2O4 (x=0-0.6), and lead zirconate titanate. In bulk samples, the transverse and longitudinal couplings are weak and…

Materials Science · Physics 2007-05-23 G. Srinivasan , R. Hayes , C. P. DeVreugd , V. M. Laletsin , N. Padubnaya

Magnetoelectric (ME) coupling at low frequencies and at x-band have been investigated in layered samples containing zinc substituted lithium ferrite and lead zirconate titanate (PZT). Multilayers of Li0.5-x/2ZnxFe2.5-x/2O4 (LZFO) (x=0-0.4)…

Materials Science · Physics 2009-11-10 G. Srinivasan , R. Hayes , M. I. Bichurin

The structural, dielectric, magnetic, and magnetoelectric (ME) properties of particulate composites containing lead-iron niobate and lead titanate piezoelectric 0.94[PbFe$_{0.5}$Nb$_{0.5}$O$_3$]-0.06[PbTi$_{0.5}$O$_3$] (PFN-PT) and…

Materials Science · Physics 2022-08-25 Mohammad Torabi Shahbaz , Hossein Ahmadvand , Hadi Papi , Saeideh Mokhtari , Parviz Kameli

A theoretical model is presented for low-frequency magnetoelectric (ME) effects in bilayers of magnetostrictive and piezoelectric phases. A novel approach, the introduction of an interface coupling parameter k, is proposed for the…

Materials Science · Physics 2009-11-10 M. I. Bichurin , V. M. Petrov , G. Srinivasan

Frequency dependence of magnetoelectric (ME) coupling is investigated in trilayers of ferromagnetic alloy and piezoelectric lead zirconate titanate (PZT). The ferromagnetic phases studied include permendur, a soft magnet with high…

Materials Science · Physics 2007-05-23 U. Laletsin , N. Paddubnaya , G. Srinivasan , M. I. Bichurin

Magnetoelectric (ME) interactions in layered structures of magnetostrictive and piezoelectric phases are mediated by mechanical deformation. Here we discuss the frequency dependence of ME coupling in bilayers and trilayers of Permendur, a…

Materials Science · Physics 2009-11-10 U. Laletsin , N. Padubnaya , G. Srinivasan , C. P. DeVreugd

The first observation of microwave magnetoelectric (ME) interactions through ferromagnetic resonance (FMR) in bilayers of single crystal ferromagnetic-piezoelectric oxides and a theoretical model for the effect are presented. An electric…

Materials Science · Physics 2009-11-10 S. Shastry , G. Srinivasan , M. I. Bichurin , V. M. Petrov , A. S. Tatarenko

The synthesis of layered ferrite-lead titanate zirconate (PZT) and lanthanum nanganite-PZT and the observation of giant magneto-electric interactions are discussed. The ferrites used in our studies included pure and Zn substituted cobalt-,…

Materials Science · Physics 2007-05-23 G. Srinivasan

The direct magnetoelectric (ME) effect resulting from the polarization changes induced in a ferroelectric film by the application of a magnetic field to a ferromagnetic substrate is described using the nonlinear thermodynamic theory. It is…

Materials Science · Physics 2011-10-18 N. A. Pertsev , H. Kohlstedt , B. Dkhil

Thick film layered magnetoelectric composites consisting of ferromagnetic and ferroelectric phases have been synthesized with nickel ferrite (NFO), cobalt ferrite (CFO), La0.7Sr0.3MnO3 (LSMO), or La0.7Ca0.3MnO3 (LCMO) and lead zirconate…

Materials Science · Physics 2009-11-10 G. Srinivasan , E. T. Rasmussen , A. A. Bush , K. E. Kamentsev , V. F. Meshcheryakov , Y. K. Fetisov

The possibility of electric field control of magnetocaloric effect through quasi-isostatic compression as a result of the converse piezoelectric effect was demonstrated on cylindrical type magnetoelectric composite MnAs/PZT. It was shown…

The Magnetoelectric (ME) effect in solids is a prominent cross correlation phenomenon, in which the electric field (${\bm E}$) controls the magnetization (${\bm M}$) and the magnetic field (${\bm H}$) controls the electric polarization…

Strongly Correlated Electrons · Physics 2015-09-30 Makoto Naka , Sumio Ishihara
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