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Original Articles

Impurity levels associated to Fe3+-Vo, Fe4+-Vo and Ti4+-Vo centers in cubic perovskite crystals: Xα cluster analysis

Pages 499-502 | Published online: 07 Feb 2011

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Read on this site (7)

H. Arend, G. Montemezzani, K. Szot & H. Turcicova. (1997) Importance of oxidation and reduction of barium titanate in material science. Ferroelectrics 202:1, pages 1-10.
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I. Biaggio, M. Zgonik & P. Günter. (1992) Investigations of photorefractive effects with pico and nanosecond pulses. Ferroelectrics 126:1, pages 1-8.
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G. Godefroy, B. Jannot & F.M. Michel-Calendini. (1991) Monovalent and heterovalent substitutions in BaTiO3 single crystals: Effects on phase transitions. Phase Transitions 33:1-4, pages 3-15.
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P. Moretti & F.M. Michel-calendini. (1984) Point defects and semiconducting behaviour of Fe doped titanates deduced from molecular orbital diagrams. Ferroelectrics 55:1, pages 219-222.
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G. Ormancey & P. Jullien. (1983) Electric and optic properties of BaTiO3:Fe . Ferroelectrics Letters Section 1:4, pages 103-106.
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F.M. Michel-calendini, P. Moretti & G. Godefroy. (1982) Excitation energies and optical absorption in remeika BaTio3:Co crystals. Ferroelectrics 44:1, pages 257-264.
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Articles from other publishers (20)

Yuji NOGUCHI. (2021) Defect chemistry in perovskite ferroelectrics—History, present status, and future prospects—. Journal of the Ceramic Society of Japan 129:6, pages 271-285.
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Yuji Noguchi, Yuki Taniguchi, Ryotaro Inoue & Masaru Miyayama. (2020) Successive redox-mediated visible-light ferrophotovoltaics. Nature Communications 11:1.
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N. V. Dang, T. D. Thanh, L. V. Hong, V. D. Lam & The-Long Phan. (2011) Structural, optical and magnetic properties of polycrystalline BaTi1−xFexO3 ceramics. Journal of Applied Physics 110:4.
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Marvin B. Klein. 2007. Photorefractive Materials and Their Applications 2. Photorefractive Materials and Their Applications 2 241 284 .
Marko Zgonik, Michael Ewart, Carolina Medrano & Peter Günter. 2007. Photorefractive Materials and Their Applications 2. Photorefractive Materials and Their Applications 2 205 240 .
Venkatraman Gopalan, Kenneth Schepler, Volkmar Dierolf & Ivan Biaggio. 2006. The Handbook of Photonics, Second Edition. The Handbook of Photonics, Second Edition 6-1 6-66 .
Y. Fainman, J. Ma & S.H. Lee. (1993) Non-linear optical materials and applications. Materials Science Reports 9:2-3, pages 53-139.
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I. Biaggio, M. Zgonik & P. Günter. (1990) Build-up and dark decay of transient photorefractive gratings in reduced KNbO3. Optics Communications 77:4, pages 312-317.
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G. A. Brost & R. A. Motes. (1990) Photoinduced absorption in photorefractive barium titanate. Optics Letters 15:10, pages 538.
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M O Selme & P Pecheur. (1988) The electronic structure of transition-metal impurities in SrTiO 3 . Journal of Physics C: Solid State Physics 21:9, pages 1779-1790.
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Marvin B. Klein. 1988. Photorefractive Materials and Their Applications I. Photorefractive Materials and Their Applications I 195 236 .
M. B. Klein. 1987. Electro-optic and Photorefractive Materials. Electro-optic and Photorefractive Materials 266 282 .
L Hafid & F M Michel-Calendini. (1986) Electronic structure of LiNbO 3 : densities of states, optical anisotropy and spontaneous polarisation calculated from the Xα molecular orbital method . Journal of Physics C: Solid State Physics 19:16, pages 2907-2917.
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P. Moretti & F.M. Michel-Calendini. (1986) C4ν symmetry effects on the electronic structure of BaTiO3 doped crystals: Local position of the metallic ion (Fe3+, Co2+) and distortion of the oxygen octahedron. Solid State Communications 58:9, pages 617-619.
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M. B. Klein & R. N. Schwartz. (1986) Photorefractive effect in BaTiO_3: microscopic origins. Journal of the Optical Society of America B 3:2, pages 293.
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F.M. Michel-Calendini, L. Hafid, G. Godefroy & H. Chermette. (1985) Cubic to tetragonal phase transition effects on the electronic structures of pure and iron doped barium titanate. Solid State Communications 54:11, pages 951-956.
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F.M. Michel-Calendini. (1984) Electronic structure and term energy calculations for cubic and axial iron defects in SrTiO3. Solid State Communications 52:2, pages 167-172.
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J.P. Collin, N. Cherqui, P. Jullien & G. Ormancey. (1984) Propriétés électroniques des défauts des titanates de baryum tirés, purs ou dopés en fer. Journal de Physique 45:3, pages 601-606.
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K.W. Blazey & H. Weibel. (1984) Optical absorption spectra of reduced transition-metal ion-doped SrTiO3. Journal of Physics and Chemistry of Solids 45:8-9, pages 917-922.
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F. M. Michel-Calendini & P. Moretti. (1983) Electronic structures of Co(II) and Co(III) impurities in cubic perovskite hosts. Physical Review B 27:2, pages 763-770.
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