Theory of relaxor-ferroelectricity

Author:

Zhang Li-Li,Huang Yi-Neng

Abstract

AbstractRelaxor-ferroelectrics are fascinating and useful materials, but the mechanism of relaxor-ferroelectricity has been puzzling the scientific community for more than 65 years. Here, a theory of relaxor-ferroelectricity is presented based on 3-dimensional-extended-random-site-Ising-model along with Glauber-dynamics of pseudospins. We propose a new mean-field of pseudospin-strings to solve this kinetic model. The theoretical results show that, with decreasing pseudospin concentration, there are evolutions from normal-ferroelectrics to relaxor-ferroelectrics to paraelectrics, especially indicating by the crossovers from, (a) the sharp to diffuse change at the phase-transition temperature to disappearance in the whole temperature range of order-parameter, and (b) the power-law to Vogel-Fulcher-law to Arrhenius-relation of the average relaxation time. Particularly, the calculated local-order-parameter of the relaxor-ferroelectrics gives the polar-nano-regions appearing far above the diffuse-phase-transition and shows the quasi-fractal characteristic near and below the transition temperature. We also provide a new mechanism of Burns-transformation which stems from not only the polar-nano-regions but also the correlation-function between pseudospins, and put forward a definition of the canonical relaxor-ferroelectrics. The theory accounts for the main facts of relaxor-ferroelectricity, and in addition gives a good quantitative agreement with the experimental results of the order-parameter, specific-heat, high-frequency permittivity, and Burns-transformation of lead magnesium niobate, the canonical relaxor-ferroelectric.

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

Reference79 articles.

1. Smolenskii, G. A. & Rozgachev, K. I. Segnetoelektricheskie svoistva tverdykh rastvorov v sisteme titanat bariya titanat strontsiya. Z. Tekhn. Fiz. 24, 1751–1760 (1954).

2. Smolenskii, G. A. & Agranovskaya, A. I. Dielectric polarization of a number of complex compounds. Sov. Phys. Sol. Stat. 1, 1429–1437 (1960).

3. Westphal, V., Kleemann, W. & Glinchuk, M. D. Diffuse phase-transitions and random-field-induced domain states of the relaxor ferroelectric PbMg1/3Nb2/3O3. Phys. Rev. Lett. 68, 847–850 (1992).

4. Kleemann, W. & Kloessner, A. Glassy and domain states in random dipolar systems. Ferroelectrics 150, 35–45 (1993).

5. Viehland, D., Jang, S. J., Cross, L. E. & Wuttig, M. Freezing of the polarization fluctuations in lead magnesium niobate relaxors. J. Appl. Phys. 68, 2916–2921 (1990).

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