Abstract
We present investigations on temperature-dependent changes in the size distribution of ferroelectric domains in single crystals of the novel tungsten bronze type calcium barium niobáte (CBN). Since its congruently melting composition has a relatively high ferroelectric phase transition temperature of about 265 °C, CBN can be considered as an interesting material for various future applications. Using k-space spectroscopy, both unpoled polydomain crystals and crystals poled at room temperature have been investigated in the vicinity of the ferroelectric phase transition. In unpoled CBN, an intermixture of domain-size dependent phase transitions has been observed, which can be described with the model for diffuse phase transitions established by Smolenskii. © IOP Publishing Ltd and Deutsche Physikalische Gesellschaft.
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CITATION STYLE
Heine, U., Voelker, U., Betzler, K., Burianek, M., & Muehlberg, M. (2009). The ferroelectric phase transition of calcium barium niobáte: experimental evidence of smolenskii’s model for diffuse phase transitions? New Journal of Physics, 11. https://doi.org/10.1088/1367-2630/11/8/083021
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