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Materials - II

Regularities in domain structure formation in multiaxial ferroelectric crystals

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Pages 289-298 | Published online: 08 Feb 2011

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Read on this site (1)

M. H. Garrett, J. Y. Chang, H. P. Jenssen & C. Warde. (1991) A method for poling barium titanate, BaTiO3. Ferroelectrics 120:1, pages 167-173.
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Articles from other publishers (8)

Petr S. Bednyakov & Jiří Hlinka. (2023) Charged Domain Walls in BaTiO 3 Crystals Emerging from Superdomain Boundaries . Advanced Electronic Materials 9:6.
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Anna Grünebohm, Madhura Marathe, Ruben Khachaturyan, Raphael Schiedung, Doru C Lupascu & Vladimir V Shvartsman. (2021) Interplay of domain structure and phase transitions: theory, experiment and functionality. Journal of Physics: Condensed Matter 34:7, pages 073002.
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Y. W. Li, J. F. Scott, D. N. Fang & F. X. Li. (2013) 90-degree polarization switching in BaTiO3 crystals without domain wall motion. Applied Physics Letters 103:23.
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V A Sanina, E I Golovenchits, V G Zalesskii & B Kh Khannanov. (2013) Common features of low-temperature spin–charge separation and superlattice formation in multiferroic manganites and antiferromagnetic cuprates. Journal of Physics: Condensed Matter 25:33, pages 336001.
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Y. W. Li, X. B. Ren, F. X. Li, H. S. Luo & D. N. Fang. (2013) Large and electric field tunable superelasticity in BaTiO3 crystals predicted by an incremental domain switching criterion. Applied Physics Letters 102:9.
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M. Y. Gureev, P. Mokrý, A. K. Tagantsev & N. Setter. (2012) Ferroelectric charged domain walls in an applied electric field. Physical Review B 86:10.
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M. Y. Gureev, A. K. Tagantsev & N. Setter. (2011) Head-to-head and tail-to-tail domain walls in an isolated ferroelectric . Physical Review B 83:18.
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Huilin Li, Yuanwei Zhang, Huamin Zou & Renhui Wang. (1993) A transmission electron microscopy study of ferroelectric domains in a modified lead zirconate titanate ceramic. Journal of Physics: Condensed Matter 5:28, pages 5037-5044.
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