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Section 3: Phases transitions (including incommensurate and ferroelastic)

Optical and electric investigations of the phase transitions in pyrochlore Cd2Nb2O7

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Pages 275-280 | Published online: 10 Feb 2011

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N.N. Kolpakova, I.L. Shulpina, M.P. Shcheglov, S. Waplak, W. Bednarski, W. Nawrocik & M. Wiesner. (2000) Relaxor, glassy and ferroic states in Cd2Nb2O7 pyrochlore. Ferroelectrics 240:1, pages 1531-1538.
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N.N. Kolpakova, M. Wiesner, I.L. Shul'pina & P.P. Syrnikov. (1999) Ferroic states in Cd2Nb2O7pyrochlore: Characterization, evolution and impurity/dislocation effects. Ferroelectrics 221:1, pages 91-95.
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N.N. Kolpakova, L. Szczepanska, I.L. Shul'pina, M. Wiesner & P. Piskunowicz. (1997) Superstructure and thermal hysteresis effects at Tcurie in Cd2Nb2O7 pyrochlore. Ferroelectrics 190:1, pages 173-178.
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N.N. Kolpakova, M. Wiesner, I.L. Shul'pina, L. Szczepanska & P. Piskunowicz. (1996) Phase transitions in high-symmetry cd2Nb2O7 single crystals of the pyrochlore family. Ferroelectrics 185:1, pages 131-134.
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N.N. Kolpakova, B. Hilczer, J. Wolak & M. Wiesner. (1994) Dielectric relaxation in Cd2Nb2O7 single crystals in temperature range 90-270 K. Ferroelectrics 157:1, pages 195-200.
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N.N. Kolpakova, B. Hilczer & M. Wiesner. (1994) Incommensurable and glassy behaviour of Cd2-Nb2-O7 oxide pyrochlore single crystals. Phase Transitions 47:1-2, pages 113-124.
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Uyen Dang, Jake O’Hara, Hayden A. Evans, Daniel Olds, Juan Chamorro, Daniel Hickox-Young, Geneva Laurita & Robin T. Macaluso. (2022) Vacancy-Driven Disorder and Elevated Dielectric Response in the Pyrochlore Pb 1.5 Nb 2 O 6.5 . Inorganic Chemistry 61:46, pages 18601-18610.
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Daniel Hickox-Young, Geneva Laurita, Quintin N. Meier, Daniel Olds, Nicola A. Spaldin, Michael R. Norman & James M. Rondinelli. (2022) Local structure and its implications for the relaxor ferroelectric . Physical Review Research 4:3.
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Quintin N. Meier, Daniel Hickox-Young, Geneva Laurita, Nicola A. Spaldin, James M. Rondinelli & Michael R. Norman. (2022) Leggett Modes Accompanying Crystallographic Phase Transitions. Physical Review X 12:1.
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M.V. Talanov, A.A. Pavelko & L.S. Kamzina. (2022) Domain-wall freezing in Cd2Nb2O7 pyrochlore single crystal. Materials Research Bulletin 145, pages 111548.
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Geneva Laurita, Daniel Hickox-Young, Samra Husremovic, Jun Li, Arthur W. Sleight, Robin Macaluso, James M. Rondinelli & Mas A. Subramanian. (2019) Covalency-driven Structural Evolution in the Polar Pyrochlore Series Cd 2 Nb 2 O 7– x S x . Chemistry of Materials 31:18, pages 7626-7637.
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Rebecca M. Smith, Jonathan Gardner, Finlay D. Morrison, S. E. Rowley, Catarina Ferraz, M. A. Carpenter, Jiasheng Chen, Jack Hodkinson, Siân E. Dutton & J. F. Scott. (2018) Quantum critical points in ferroelectric relaxors: Stuffed tungsten bronze and lead pyrochlore ( ) . Physical Review Materials 2:8.
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A. Kiraci & H. Yurtseven. (2016) Damping constant and the relaxation time calculated for the lowest-frequency soft mode in the ferroelectric phase of Cd2Nb2O7. Optik 127:23, pages 11497-11504.
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Makoto Tachibana, Katharina Fritsch & Bruce D Gaulin. (2013) X-ray scattering studies of structural phase transitions in pyrochlore Cd 2 Nb 2 O 7 . Journal of Physics: Condensed Matter 25:43, pages 435902.
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Maria Polomska, Bozena Hilczer, Ewa Markiewicz, Zbigniew Trybula, Bartlomiej Andrzejewski, Izabela Szafraniak-Wiza & Adam Pietraszko. (2013) Dielectric response and specific heat studies of Cd 2 Nb 2 O 7 ceramics obtained from mechano-synthesized nanopowders . IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control 60:8, pages 1603-1611.
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T. Malcherek. (2011) The ferroelectric properties of Cd 2 Nb 2 O 7 : a Monte Carlo simulation study . Journal of Applied Crystallography 44:3, pages 585-594.
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Hiroki Taniguchi, Takao Shimizu, Hitoshi Kawaji, Tooru Atake, Mitsuru Itoh & Makoto Tachibana. (2008) Ferroelectric phase transition of studied by Raman scattering . Physical Review B 77:22.
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F. X. Zhang, J. Lian, U. Becker, R. C. Ewing, L. M. Wang, L. A. Boatner, Jingzhu Hu & S. K. Saxena. (2006) Pressure-induced structural transitions and phase decomposition in the pyrochlore . Physical Review B 74:17.
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N. N. Kolpakova, P. Czarnecki, W. Nawrocik, M. P. Shcheglov, P. P. Syrnikov & L. Szczepańska. (2005) Crossover from glassy to ferroelectric polarization behavior under a dc bias electric field in relaxor ferroelectrics. Physical Review B 72:2.
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N. N. Kolpakova & P. Czarnecki. (2005) Nonergodic state of relaxation ferroelectric Cd2Nb2O7 in a constant electric field. Journal of Experimental and Theoretical Physics 100:5, pages 964-970.
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V. A. Isupov. (2005) On the Nature of the Phase Transitions in Cadmium Pyroniobate. Physics of the Solid State 47:11, pages 2119.
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Chen Ang & Zhi Yu. (2004) Phase-transition temperature and character of . Physical Review B 70:13.
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Zhi Yu & Chen Ang. (2004) Dielectric relaxor behavior of Cd2Nb2O7. Applied Physics Letters 85:5, pages 801-803.
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Makoto Tachibana, Hitoshi Kawaji & Tooru Atake. (2004) Calorimetric investigation of successive phase transitions in . Physical Review B 70:6.
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Célia Machado Ronconi & Oswaldo Luiz Alves. (2003) Structural evolution and optical properties of Cd2Nb2O7 films prepared by metallo-organic decomposition. Thin Solid Films 441:1-2, pages 121-129.
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N. N. Kolpakova. (2003) Glass behavior of a relaxor Cd2Nb2O7 in a weak DC field. Journal of Experimental and Theoretical Physics 96:3, pages 538-542.
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N. N. Kolpakova, P. Charnetzki, W. Nawrochik, P. P. Syrnikov & A. O. Lebedev. (2002) Dielectric relaxation and ferroelectricity in Cd2Nb2O7 pyrochlore. Journal of Experimental and Theoretical Physics 94:2, pages 395-402.
Crossref
N N Kolpakova, S Waplak & W Bednarski. (1998) EPR spectroscopy and optical microscopy study of ferroic states in pyrochlore. Journal of Physics: Condensed Matter 10:41, pages 9309-9316.
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N. N. Kolpakova, I. L. Shul’pina, L. Shchepan’ska & P. Piskunovich. (1997) Evolution of domains and thermal hysteresis effects in the pyrochlore-structure ferroelectric Cd2Nb2O7. Technical Physics Letters 23:12, pages 972-974.
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K. Łukaszewicz, A. Pietraszko, J. Stepień-Damm & N.N. Kolpakova. (1994) Temperature dependence of the crystal structure and dynamic disorder of cadmium in cadmium pyroniobates [Cd2Nb2O7 and Cd2Ta2O7]. Materials Research Bulletin 29:9, pages 987-992.
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N N Kolpakova, R Margraf & M Polomska. (1994) Dielectric relaxation phenomena in Cd 2 Nb 2 O 7 ferroelectric-ferroelastics . Journal of Physics: Condensed Matter 6:14, pages 2787-2798.
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Hans Schmid. 1993. Ferroelectric Ceramics. Ferroelectric Ceramics 107 126 .

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