Redistribution of Random Nanoregions in Polarized Relaxor Ferroelectrics

The dielectric permittivity in Pb 0.85 La 0.10 Zr 0.6 Ti 0.4 O 3 (PLZT 10/60/40) relaxor ferroelectrics is studied for different degrees of poling. We find that the half width of the dielectric permittivity and the transition temperature dependence on frequency becomes smaller by increasing the degr...

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Published inFerroelectrics Vol. 369; no. 1; pp. 179 - 184
Main Authors Marqués, M. I., Aragó, C., Barranco, A. Peláiz, Zaldívar, O. Garcia, Piñar, F. Calderón, Lopez-Noda, R.
Format Journal Article Conference Proceeding
LanguageEnglish
Published London Taylor & Francis Group 01.01.2008
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Abstract The dielectric permittivity in Pb 0.85 La 0.10 Zr 0.6 Ti 0.4 O 3 (PLZT 10/60/40) relaxor ferroelectrics is studied for different degrees of poling. We find that the half width of the dielectric permittivity and the transition temperature dependence on frequency becomes smaller by increasing the degree of poling. In order to explain such behavior we consider a model, previously used to study uniaxial relaxor ferroelectrics, where the nanoregions inside the sample are redistributed by applying an external electric field. The redistribution consists in a decrease on the dispersion of the random fields affecting to each nanoregion. This decrease on the dispersion decimates both, the broadening of the dielectric peak and the dependence with frequency of the transition temperature.
AbstractList The dielectric permittivity in Pb0.85La0.10Zr0.6Ti0.4O3 (PLZT 10/60/40) relaxor ferroelectrics is studied for different degrees of poling. We find that the half width of the dielectric permittivity and the transition temperature dependence on frequency becomes smaller by increasing the degree of poling. In order to explain such behavior we consider a model, previously used to study uniaxial relaxor ferroelectrics, where the nanoregions inside the sample are redistributed by applying an external electric field. The redistribution consists in a decrease on the dispersion of the random fields affecting to each nanoregion. This decrease on the dispersion decimates both, the broadening of the dielectric peak and the dependence with frequency of the transition temperature.
The dielectric permittivity in Pb 0.85 La 0.10 Zr 0.6 Ti 0.4 O 3 (PLZT 10/60/40) relaxor ferroelectrics is studied for different degrees of poling. We find that the half width of the dielectric permittivity and the transition temperature dependence on frequency becomes smaller by increasing the degree of poling. In order to explain such behavior we consider a model, previously used to study uniaxial relaxor ferroelectrics, where the nanoregions inside the sample are redistributed by applying an external electric field. The redistribution consists in a decrease on the dispersion of the random fields affecting to each nanoregion. This decrease on the dispersion decimates both, the broadening of the dielectric peak and the dependence with frequency of the transition temperature.
Author Lopez-Noda, R.
Aragó, C.
Barranco, A. Peláiz
Zaldívar, O. Garcia
Piñar, F. Calderón
Marqués, M. I.
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10.1103/PhysRevLett.92.065701
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10.1364/OL.17.000142
10.1209/epl/i2002-00534-y
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10.1007/978-1-4613-1463-9
10.1142/S0217979293002912
10.1103/PhysRevLett.35.1399
10.1103/PhysRevLett.83.424
10.1103/PhysRevB.28.2527
10.1088/0953-8984/15/9/202
10.1038/nmat1560
10.1209/epl/i2002-00503-6
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Issue 1
Keywords Random field
Frequency dependence
PLZT
nanoregions
Temperature effects
Electric field effects
Poling
polarization
Nanostructures
Relaxor
Permittivity
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Snippet The dielectric permittivity in Pb 0.85 La 0.10 Zr 0.6 Ti 0.4 O 3 (PLZT 10/60/40) relaxor ferroelectrics is studied for different degrees of poling. We find...
The dielectric permittivity in Pb0.85La0.10Zr0.6Ti0.4O3 (PLZT 10/60/40) relaxor ferroelectrics is studied for different degrees of poling. We find that the...
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SubjectTerms Condensed matter: electronic structure, electrical, magnetic, and optical properties
Dielectric properties of solids and liquids
Dielectric, piezoelectric, ferroelectric and antiferroelectric materials
Dielectrics, piezoelectrics, and ferroelectrics and their properties
Exact sciences and technology
nanoregions
Niobates, titanates, tantalates, pzt ceramics, etc
Permittivity (dielectric function)
Physics
polarization
Relaxor
Title Redistribution of Random Nanoregions in Polarized Relaxor Ferroelectrics
URI https://www.tandfonline.com/doi/abs/10.1080/00150190802378007
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Volume 369
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