Exchange biasing and electric polarization with YMnO3

This article may be downloaded for personal use only. Any other use requires prior permission of the author and the American Institute of Physics. We report on the growth and functional characterizations of epitaxialthin films of the multiferroic YMnO3. We show that using Pt as a seed layer on SrTiO...

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Hauptverfasser: Martí Rovirosa, Xavier, Sánchez Barrera, Florencio, Hrabovsky, D, Fábrega Sánchez, Lourdes, Ruyter, A, Fontcuberta, Josep, Laukhin, V, Skumryev, Vassil, García-Cuenca Varona, María Victoria, Ferrater Martorell, Cèsar, Varela Fernández, Manuel, 1956, Vilà, A, Lüders, Ulrike Anne, Bobo, Jean-François, American Physical Society
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creator Martí Rovirosa, Xavier
Sánchez Barrera, Florencio
Hrabovsky, D
Fábrega Sánchez, Lourdes
Ruyter, A
Fontcuberta, Josep
Laukhin, V
Skumryev, Vassil
García-Cuenca Varona, María Victoria
Ferrater Martorell, Cèsar
Varela Fernández, Manuel, 1956
Vilà, A
Lüders, Ulrike Anne
Bobo, Jean-François
American Physical Society
description This article may be downloaded for personal use only. Any other use requires prior permission of the author and the American Institute of Physics. We report on the growth and functional characterizations of epitaxialthin films of the multiferroic YMnO3. We show that using Pt as a seed layer on SrTiO3(111) substrates, epitaxialYMnO3films (0001) textured are obtained. An atomic force microscope has been used to polarize electric domains revealing the ferroelectric nature of the film. When a Permalloy layer is grown on top of the YMnO3(0001)film, clear indications of exchange bias and enhanced coercivity are observed at low temperature. The observation of coexisting antiferromagnetism and electrical polarization suggests that the biferroic character of YMnO3 can be exploited in novel devices.
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subjects Atomic force microscopy
Epitaxy
Exchange interactions
Ferroelectric materials
Ferroelectric thin films
Ferromagnetic materials
Ozone
Polarization
Thin film growth
X-ray diffraction
title Exchange biasing and electric polarization with YMnO3
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