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Properties

Glassy phenomena in disordered perovskite-like crystals

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Pages 173-176 | Received 15 Sep 1988, Published online: 08 Feb 2011

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R. A. Cowley, S. N. Gvasaliya, S. G. Lushnikov, B. Roessli & G. M. Rotaru. (2011) Relaxing with relaxors: a review of relaxor ferroelectrics. Advances in Physics 60:2, pages 229-327.
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R. Burkovsky, S.B. Vakhrushev, S.M. Shapiro, A. Ivanov, K. Hirota & M. Matsuura. (2010) Inelastic and Quasielastic Neutron Scattering in PbMg1/3Nb2/3O3 Above the Burns Temperature. Ferroelectrics 400:1, pages 372-386.
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K. Hirota. (2007) Phase Transitions in Relaxor Ferroelectricity. Ferroelectrics 354:1, pages 136-144.
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B. P. Burton, E. Cockayne, S. Tinte & U. V. Waghmare. (2006) First-principles-based simulations of relaxor ferroelectrics. Phase Transitions 79:1-2, pages 91-121.
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G. A. Samara & E. L. Venturini. (2006) Ferroelectric/relaxor crossover in compositionally disordered perovskites. Phase Transitions 79:1-2, pages 21-40.
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H.K. Guo, P. Bao & Y.N. Wang. (2001) Admittance spectroscopy of glassy behavior in relaxor ferroelectrics. Ferroelectrics 261:1, pages 71-76.
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W. Kleemann, J. Dec, D. Kahabka, P. Lehnen & Y.G. Wang. (1999) Phase transitions and precursor phenomena in doped quantum paraelectrics. Ferroelectrics 235:1, pages 33-46.
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I.G. Siny, S.G. Lushnikov, R.S. Katiyar & V.H. Schmidt. (1999) PbMg1/3Nb2/3O3 as a model object for light scattering experiments. Ferroelectrics 226:1, pages 191-215.
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A.E. Glazounov & A.K. Tagantsev. (1999) A “breathing” model for the polarization response of relaxor ferroelectrics. Ferroelectrics 221:1, pages 57-66.
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K. Nomura, T. Shingai, N. Yasuda, H. Ohwa & H. Terauchi. (1998) Phase transition in a relaxor, Pb(In1/2Nb1/2)O3 . Ferroelectrics 218:1, pages 69-78.
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A.K. Tagantsev & A.E. Glazounov. (1998) Mechanism of polarization response and dielectric non-linearity of PbMg1/3Nb2/3O3 relaxor ferroelectric. Phase Transitions 65:1-4, pages 117-139.
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V.V. Chernyshev, S.G. Zhukov, S.B. Vakhrushev & H. Schenk. (1997) Structural study of Pb(Mg1/3Nb2/3)O3 at low temperatures. Ferroelectrics Letters Section 23:1-2, pages 45-53.
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Zuo-Guang Ye. (1996) Relaxor ferroelectric Pb(Mg1/3Nb2/3)O3: Properties and present understanding. Ferroelectrics 184:1, pages 193-208.
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Hong Gui, Bing-Lin Gu & Xiao-Wen Zhang. (1995) Spontaneous polarization in lead magnesium niobate relaxor. Ferroelectrics 163:1, pages 69-75.
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E.V. Colla, E. Yu. Koroleva, A.A. Nabereznov & N.M. Okuneva. (1994) The lead magnoniobate behavior in applied electric field. Ferroelectrics 151:1, pages 337-342.
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M. Fahland & E. Hegenbarth. (1993) Thermal conductivity of Pb (Mg1/3 Nb2/3) O3 under the influence of high electric field. Ferroelectrics Letters Section 15:3-4, pages 89-96.
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R. Laiho, S. Lushnikov & I. Siny. (1992) Dispersion of hypersonic velocity and damping at diffuse phase transition in PbMg1/3Nb2/3O3 . Ferroelectrics 125:1, pages 493-498.
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Dwight Viehland, S. Jang, L. Eric Cross & Manfred Wuttig. (1991) The dielectric relaxation of lead magnesium niobate relaxor ferroelectrics. Philosophical Magazine B 64:3, pages 335-344.
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D. Viehland, M. Wuttig & L. E. Cross. (1991) The glassy behavior of relaxor ferroelectrics. Ferroelectrics 120:1, pages 71-77.
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Crossref
Wolfgang Kleemann. 2014. Mesoscopic Phenomena in Multifunctional Materials. Mesoscopic Phenomena in Multifunctional Materials 249 269 .
G. G. Guzmán-Verri, P. B. Littlewood & C. M. Varma. (2013) Paraelectric and ferroelectric states in a model for relaxor ferroelectrics. Physical Review B 88:13.
Crossref
Sergey Prosandeev, Igor P. Raevski, Maria A. Malitskaya, Svetlana I. Raevskaya, Haydn Chen, Chen-Chia Chou & Brahim Dkhil. (2013) Condensation of the atomic relaxation vibrations in lead-magnesium-niobate at T=T*. Journal of Applied Physics 114:12.
Crossref
Masato MATSUURA. (2013) II Dynamics of Lattices in Solids Lattice Dynamics in Relaxor Ferroelectrics Studied by Inelastic Neutron Scattering. RADIOISOTOPES 62:6, pages 393-405.
Crossref
M. Paściak, A. P. Heerdegen, D. J. Goossens, R. E. Whitfield, A. Pietraszko & T. R. Welberry. (2012) Assessing Local Structure in PbZn1/3Nb2/3O3 Using Diffuse Scattering and Reverse Monte Carlo Refinement. Metallurgical and Materials Transactions A 44:1, pages 87-93.
Crossref
Parmendra Kumar Bajpai. (2012) Dielectric Relaxation Phenomena in some Lead and Non-Lead Based Ferroelectric Relaxor Materials: Recent Advances. Solid State Phenomena 189, pages 233-266.
Crossref
M. Paściak, T. R. Welberry, J. Kulda, M. Kempa & J. Hlinka. (2012) Polar nanoregions and diffuse scattering in the relaxor ferroelectric PbMg Nb O . Physical Review B 85:22.
Crossref
WOLFGANG KLEEMANN. (2012) RANDOM FIELDS IN RELAXOR FERROELECTRICS — A JUBILEE REVIEW. Journal of Advanced Dielectrics 02:02, pages 1241001.
Crossref
Vladimir V. Shvartsman & Doru C. Lupascu. (2011) Lead‐Free Relaxor Ferroelectrics. Journal of the American Ceramic Society 95:1, pages 1-26.
Crossref
Jae Yun Yi & Jung-Kun Lee. (2011) Stabilized antiferroelectric phase in lanthanum-doped (Na 1/2 Bi 1/2 )TiO 3 . Journal of Physics D: Applied Physics 44:41, pages 415302.
Crossref
Tsang-Tse Fang & Teng-Yi Chiu. (2011) Polarization dynamics of polar nano-regions in Sr0.5Ba0.5Nb2O6 doped with combinations of Ce and Cr. Acta Materialia 59:4, pages 1692-1699.
Crossref
Shanming Ke, Huiqing Fan & Haitao Huang. (2010) Revisit of the Vögel–Fulcher freezing in lead magnesium niobate relaxors. Applied Physics Letters 97:13.
Crossref
C. Stock, L. Van Eijck, P. Fouquet, M. Maccarini, P. M. Gehring, Guangyong Xu, H. Luo, X. Zhao, J.-F. Li & D. Viehland. (2010) Interplay between static and dynamic polar correlations in relaxor . Physical Review B 81:14.
Crossref
Masato Matsuura, Hitoshi Endo, Mitsuyoshi Matsushita, Yoshihito Tachi, Yosuke Iwasaki & Kazuma Hirota. (2010) Study of Slow Lattice Dynamics in Relaxor Ferroelectric PMN–30%PT by Neutron Spin Echo Technique. Journal of the Physical Society of Japan 79:3, pages 033601.
Crossref
V. V. Shvartsman, W. Kleemann, D. A. Kiselev, I. K. Bdikin & A. L. Kholkin. 2011. Scanning Probe Microscopy of Functional Materials. Scanning Probe Microscopy of Functional Materials 345 383 .
D.A. Bonnell, S.V. Kalinin, A.L. Kholkin & A. Gruverman. (2011) Piezoresponse Force Microscopy: A Window into Electromechanical Behavior at the Nanoscale. MRS Bulletin 34:9, pages 648-657.
Crossref
Takashi Teranishi, Takuya Hoshina, Hiroaki Takeda & Takaaki Tsurumi. (2009) Ultrawideband dielectric spectroscopy of BaZrxTi1−xO3 ceramics and its microscopic mechanism of polarization. Journal of Applied Physics 105:11.
Crossref
Tsang-Tse Fang & Han-Yang Chung. (2009) Dielectric relaxation behavior of undoped, Ce-, and Cr-doped Sr0.5Ba0.5Nb2O6 at high temperatures. Applied Physics Letters 94:9.
Crossref
Jinsheng Wen, Guangyong Xu, C. Stock, P. M. Gehring, Z. Zhong, L. A. Boatner, E. L. Venturini & G. A. Samara. (2008) Effect of local dipole moments on the structure and lattice dynamics of . Physical Review B 78:14.
Crossref
R. Pirc & R. Blinc. (2007) Vogel-Fulcher freezing in relaxor ferroelectrics. Physical Review B 76:2.
Crossref
A. A. Bokov & Z. -G. Ye. 2007. Frontiers of Ferroelectricity. Frontiers of Ferroelectricity 31 52 .
Wolfgang Kleemann. 2007. Frontiers of Ferroelectricity. Frontiers of Ferroelectricity 129 136 .
Kazuma Hirota, Shuichi Wakimoto & David E. Cox. (2006) Neutron and X-ray Scattering Studies of Relaxors. Journal of the Physical Society of Japan 75:11, pages 111006.
Crossref
M. Matsuura, K. Hirota, P.M. Gehring, W. Chen, Z.-G. Ye & G. Shirane. (2006) Composition dependence of the diffuse scattering in the relaxor – ( and 0.10). Physica B: Condensed Matter 385-386, pages 123-125.
Crossref
Gen Shirane & Peter M. Gehring. 2006. Morphotropic Phase Boundary Perovskites, High Strain Piezoelectrics, and Dielectric Ceramics. Morphotropic Phase Boundary Perovskites, High Strain Piezoelectrics, and Dielectric Ceramics 17 35 .
A. A. Bokov & Z.-G. Ye. (2006) Recent progress in relaxor ferroelectrics with perovskite structure. Journal of Materials Science 41:1, pages 31-52.
Crossref
Eugene V. Colla & M. B. Weissman. (2005) Two-step phase changes in cubic relaxor ferroelectrics. Physical Review B 72:10.
Crossref
Guangyong Xu, Z. Zhong, H. Hiraka & G. Shirane. (2004) Three-dimensional mapping of diffuse scattering in . Physical Review B 70:17.
Crossref
S. N. Gvasaliya, B. Roessli, D. Sheptyakov, S. G. Lushnikov & T. A. Shaplygina. (2004) Neutron scattering study of PbMg $_{\mathsf{1/3}}$Ta $_{\mathsf{2/3}}$O$_{\mathsf 3}$ and BaMg $_{\mathsf{1/3}}$Ta $_{\mathsf{2/3}}$O$_{\mathsf 3}$ complex perovskites. The European Physical Journal B 40:3, pages 235-241.
Crossref
Anatoly I. Frenkel, Douglas M. Pease, Jayne Giniewicz, Edward A. Stern, Dale L. Brewe, Million Daniel & Joseph Budnick. (2004) Concentration-dependent short-range order in the relaxor ferroelectric . Physical Review B 70:1.
Crossref
Guangyong Xu, G. Shirane, J. R. D. Copley & P. M. Gehring. (2004) Neutron elastic diffuse scattering study of . Physical Review B 69:6.
Crossref
R. Blinc, V.V. Laguta, R. Pirc & B. Zalar. (2004) Field cooled and zero field cooled 207Pb NMR of the relaxor ferroelectric PMN. Solid State Nuclear Magnetic Resonance 25:1-3, pages 185-187.
Crossref
Guangyong Xu, D. Viehland, J. F. Li, P. M. Gehring & G. Shirane. (2003) Evidence of decoupled lattice distortion and ferroelectric polarization in the relaxor system . Physical Review B 68:21.
Crossref
S. N Gvasaliya, B Roessli & S. G Lushnikov. (2003) Neutron diffuse scattering from PbMg 1/3 Ta 2/3 O 3 relaxor ferroelectric . Europhysics Letters (EPL) 63:2, pages 303-309.
Crossref
J Hlinka, S Kamba, J Petzelt, J Kulda, C A Randall & S J Zhang. (2003) Diffuse scattering in Pb(Zm 1/3 Nb 2/3 )O 3 with 8  PbTiO 3 by quasi-elastic neutron scattering . Journal of Physics: Condensed Matter 15:24, pages 4249-4257.
Crossref
V. A. Isupov. (2003) Nature of physical phenomena in ferroelectric relaxors. Physics of the Solid State 45:6, pages 1107-1111.
Crossref
George A Samara. (2003) The relaxational properties of compositionally disordered ABO 3 perovskites . Journal of Physics: Condensed Matter 15:9, pages R367-R411.
Crossref
Z.-G. Ye, Y. Bing, J. Gao, A. A. Bokov, P. Stephens, B. Noheda & G. Shirane. (2003) Development of ferroelectric order in relaxor . Physical Review B 67:10.
Crossref
Guangyong Xu, Z. Zhong, Y. Bing, Z.-G. Ye, C. Stock & G. Shirane. (2003) Ground state of the relaxor ferroelectric . Physical Review B 67:10.
Crossref
V. V. Shvartsman, M. Wojtas, S. Vakhrushev & A. L. Kholkin. (2011) Nanoscale investigation of polar structure of (1-x)PbMg 1/3 Nb 2/3 O 3 -xPbTiO 3 single crystals . MRS Proceedings 785.
Crossref
S. Wakimoto, C. Stock, Z.-G. Ye, W. Chen, P. M. Gehring & G. Shirane. (2002) Mode coupling and polar nanoregions in the relaxor ferroelectric . Physical Review B 66:22.
Crossref
S. B. Vakhrushev & S. M. Shapiro. (2002) Direct evidence of soft mode behavior near the Burns temperature in the relaxor ferroelectric . Physical Review B 66:21.
Crossref
S. Wakimoto, C. Stock, R. J. Birgeneau, Z.-G. Ye, W. Chen, W. J. L. Buyers, P. M. Gehring & G. Shirane. (2002) Ferroelectric ordering in the relaxor as evidenced by low-temperature phonon anomalies . Physical Review B 65:17.
Crossref
T. Y. Koo, P. M. Gehring, G. Shirane, V. Kiryukhin, S.-G. Lee & S-W. Cheong. (2002) Anomalous transverse acoustic phonon broadening in the relaxor ferroelectric . Physical Review B 65:14.
Crossref
A. A. Bokov & Z.-G. Ye. (2002) Low-frequency dielectric spectroscopy of the relaxor ferroelectric . Physical Review B 65:14.
Crossref
K. Hirota, Z.-G. Ye, S. Wakimoto, P. M. Gehring & G. Shirane. (2002) Neutron diffuse scattering from polar nanoregions in the relaxor . Physical Review B 65:10.
Crossref
Eugene V. Colla, Lambert K. Chao & M. B. Weissman. (2001) Multiple aging mechanisms in relaxor ferroelectrics. Physical Review B 63:13.
Crossref
George A. Samara. 2001. 239 458 .
A. A. Bokov & Z.-G. Ye. (2000) Dielectric dispersion and critical behavior in relaxor ferroelectric Pb(Mg1/3Nb2/3)O3–PbTiO3. Applied Physics Letters 77:12, pages 1888-1890.
Crossref
E.A Rogacheva. (2000) Relaxor ferroelectrics: nanoregions-based crystalline media. Physica B: Condensed Matter 291:3-4, pages 359-367.
Crossref
A A Bokov, Z-G Ye & A A Bokov. (2000) Freezing of dipole dynamics in relaxor ferroelectric Pb(Mg 1/3 Nb 2/3 )O 3 -PbTiO 3 as evidenced by dielectric spectroscopy . Journal of Physics: Condensed Matter 12:34, pages L541-L548.
Crossref
Kouji FujishiroTakeshi IwaseYoshiaki Uesu, Yasusada Yamada, Brahim Dkhil, Jean-Michel Kiat, Shigeo Mori & Naoki Yamamoto. (2000) Optical and Structural Studies of Long-Range Order Development in Relaxor Ferroelectrics. Journal of the Physical Society of Japan 69:7, pages 2331-2338.
Crossref
V. Gosula, A. Tkachuk, K. Chung & H. Chen. (2000) X-ray scattering study of the transition dynamics in relaxor ferroelectric Pb(Mg1/3Nb2/3)O3. Journal of Physics and Chemistry of Solids 61:2, pages 221-227.
Crossref
N. Setter & R. Waser. (2000) Electroceramic materials. Acta Materialia 48:1, pages 151-178.
Crossref
Huh‐Tswen Lin, David C. Van Aken & Wayne Huebner. (2004) Modeling the Dielectric Response and Relaxation Spectra of Relaxor Ferroelectrics. Journal of the American Ceramic Society 82:10, pages 2698-2704.
Crossref
Yung Park & Kevin M. Knowles. (1999) Glassy dynamics of the incommensurate–commensurate phase transition in Zr0.98Hf0.02TiO4 ceramics. Journal of Applied Physics 85:9, pages 6434-6439.
Crossref
J. Zhao, A. E. Glazounov & Q. M. Zhang. (1999) Change in electromechanical properties of 0.9PMN:0.1PT relaxor ferroelectric induced by uniaxial compressive stress directed perpendicular to the electric field. Applied Physics Letters 74:3, pages 436-438.
Crossref
Kenji Nomura, Tetsuo Shingai, Shin-ichirou Ishino, Hikaru Terauchi, Naohiko Yasuda & Hidehiro Ohwa. (1999) X-Ray Diffraction Study of Pressure-Induced Ferroelectric Phase Transition in Relaxor-Pb(In 1/2 Nb 1/2 )O 3 . Journal of the Physical Society of Japan 68:1, pages 39-42.
Crossref
S. B. Vakhrushev, A. A. Naberezhnov, N. M. Okuneva & B. N. Savenko. (1998) Effect of electric field on neutron scattering in lead magnoniobate. Physics of the Solid State 40:10, pages 1728-1733.
Crossref
Hong-Kai Guo, Gang Fu, Xin-Gui Tang, Jin-Xiu Zhang & Zhi-Xiong Chen. (1998) The dielectric relaxation relationship of PMN - PT ceramics. Journal of Physics: Condensed Matter 10:18, pages L297-L302.
Crossref
Adrijan Levstik, Zdravko Kutnjak, Cene Filipič & Raša Pirc. (1998) Glassy freezing in relaxor ferroelectric lead magnesium niobate. Physical Review B 57:18, pages 11204-11211.
Crossref
S.B. Vakhrushev, J.-M. Kiat & B. Dkhil. (1997) X-ray study of the kinetics of field induced transition from the glass-like to the ferroelectric phase in lead magnoniobate. Solid State Communications 103:8, pages 477-482.
Crossref
A. A. Bokov. (1997) Influence of disorder in crystal structure on ferroelectric phase transitions. Journal of Experimental and Theoretical Physics 84:5, pages 994-1002.
Crossref
Laura E. Depero & Luigi Sangaletti. (1997) Structural models for lead magnesium niobate. Solid State Communications 102:8, pages 615-620.
Crossref
N. N. Krainik, S. A. Popov & S. A. Flerova. (1997) Electroluminescence study of polarization changes in lead magnoniobate crystals in pulsed electric fields. Physics of the Solid State 39:2, pages 298-300.
Crossref
J-L Dellis. (1996) Effects of a bias on the permittivity of PLZT 9/65/35. Journal of Physics: Condensed Matter 8:42, pages 7957-7965.
Crossref
Qi Tan & Dwight Viehland. (2005) AC‐Drive‐Enhanced Relaxor Characteristics and Domain Breakdown in Ferroelectrics Containing Quenched Impurities. Journal of the American Ceramic Society 79:10, pages 2747-2751.
Crossref
S. Vakhrushev, A. Nabereznov, S.K. Sinha, Y.P. Feng & T. Egami. (1996) Synchrotron X-ray scattering study of lead magnoniobate relaxor ferroelectric crystals. Journal of Physics and Chemistry of Solids 57:10, pages 1517-1523.
Crossref
V I Dimza. (1996) Dopant (Mn, Fe, Co and Cu) effects on the structure and dielectric dispersion mechanisms in relaxor PLZT ceramics. Journal of Physics: Condensed Matter 8:16, pages 2887-2903.
Crossref
Q.M Zhang, Hoydoo You, Maureen L Mulvihill & S.J Jang. (1996) An X-ray diffraction study of superlattice ordering in lead magnesium niobate. Solid State Communications 97:8, pages 693-698.
Crossref
C.-S. Tu, V. Hugo Schmidt & I. G. Siny. (1995) Hypersound anomalies and elastic constants in single-crystal PbMg1/3Nb2/3O3 by Brillouin scattering. Journal of Applied Physics 78:9, pages 5665-5668.
Crossref
Hong Gui, Binglin Gu & Xiaowen Zhang. (1995) Dynamics of the freezing process in relaxor ferroelectrics. Physical Review B 52:5, pages 3135-3142.
Crossref
E. V. Colla, E. Yu. Koroleva, N. M. Okuneva & S. B. Vakhrushev. (1995) Long-Time Relaxation of the Dielectric Response in Lead Magnoniobate. Physical Review Letters 74:9, pages 1681-1684.
Crossref
Y.N. Wang & Y.N. Huang. (1994) Mechanical and dielectric loss related to ferroelectric and relaxor phase transitions and domain walls. Journal of Alloys and Compounds 211-212, pages 356-360.
Crossref
S Vakhrushev, S Zhukov, G Fetisov & V Chernyshov. (1994) The high-temperature structure of lead magnoniobate. Journal of Physics: Condensed Matter 6:22, pages 4021-4027.
Crossref
A J Bell. (1993) Calculations of dielectric properties from the superparaelectric model of relaxors. Journal of Physics: Condensed Matter 5:46, pages 8773-8792.
Crossref
Dwight Viehland, J. F. Li, S. J. Jang, L. E. Cross & M. Wuttig. (1992) Glassy polarization behavior of relaxor ferroelectrics. Physical Review B 46:13, pages 8013-8017.
Crossref
N. de Mathan, E. Husson & A. Morell. (1992) Modification of the nanostructure and dielectric properties of lead magnoniobate ceramics by doping. Materials Research Bulletin 27:7, pages 867-876.
Crossref
E V Colla, E Y Koroleva, N M Okuneva & S B Vakhrushev. (1992) Low-frequency dielectric response of PbMg 1/3 Nb 2/3 O 3 . Journal of Physics: Condensed Matter 4:13, pages 3671-3677.
Crossref
Dwight Viehland, J. F. Li, S. J. Jang, L. Eric Cross & Manfred Wuttig. (1991) Dipolar-glass model for lead magnesium niobate. Physical Review B 43:10, pages 8316-8320.
Crossref
Dwight Viehland, S. J. Jang, L. Eric Cross & Manfred Wuttig. (1991) Local polar configurations in lead magnesium niobate relaxors. Journal of Applied Physics 69:1, pages 414-419.
Crossref

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