References |
Avrami, M., Kinetics of phase change. I. General theory (1939) J. Chem. Phys., 7, p. 1103; Cross, L.E., Relaxor ferroelectrics: An overview (1994) Ferroelectrics, 151, p. 305; Dai, X., Xu, Z., Viehland, D., The spontaneous relaxor to normal ferroelectric transformation in La-modified lead zirconate titanate (1994) Phil. Mag. B, 70, p. 33; Duiker, H.M., Beale, P.D., Grain-size-effects in ferroelectric switching (1990) Phys. Rev. B, 41, p. 490; Fatuzzo, E., Merz, W.J., (1967) Ferroelectricity, , North-Holland Publishing Company, Amsterdam; Feder, J., (1988) Fractals, , Plenum Press, New York and London; Fridkin, V.M., (1980) Ferroelectrics Semiconductors, , Consultants Bureau, New York and London; Ishibashi, Y., Orihara, H., Size effect in ferroelectric switching (1992) J. Phys. Soc. Jap., 61, p. 4650; Ivey, M.D., Bolie, V.W., Birefringent light scattering in PLZT ceramics (1991) IEEE Trans. UFFC, 38, p. 579; Kamzina, L.S., Korzhenevskii, A.L., Percolation processes and anomalous light scattering in ferroelectrics with a diffuse phase transition (1992) Ferroelectrics, 131, p. 91; Kleemann, W., Random-field induced antiferromagnetic, ferroelectric and structural domain states (1993) Int. J. Mod. Phys. B, 7, p. 2469; Kleemann, W., Bianchi, U., Bürgel, A., Prasse, M., Dec, J., Domain state properties of weakly doped SrTiO3: Ca (1995) Phase Trans., 55, p. 57; Kolmogorov, A.N., A statistical theory of metal crystallization (1937) Izv. Acad. Nauk USSR, Ser. Math., 3, p. 355; Krumins, A., Shiosaki, T., Koizumi, S., Spontaneous transition between relaxor and ferroelectric states in lanthanum-modified lead zirconate titanate (1994) Jpn. J. Appl. Phys., 33, p. 4946; Lambeck, P.V., Jonker, G.H., Ferroelectric domain stabilization in BaTiO3 by bulk ordering of defect (1978) Ferroelectrics, 22, p. 729; Larsen, P.K., Cuppens, R., Spierings, G.A.C.M., Ferroelectric memories (1992) Ferroelectrics, 128, p. 265; Russ, J.C., (1994) Fractal Surfaces, , Plenum Press, New York; Schmidt, G., Diffuse ferroelectric phase transitions in cubically stabilized perovskites (1990) Phase Trans., 20, p. 127; Shur, V.Ya., Fast polarization reversal process: Evolution of ferroelectric domain structure in thin films (1996) Ferroelectricity and Related Phenomena Series, 10, pp. 153-192. , C.A. Paz de Araujo, J.F. Scott and G.W. Taylor (eds.), Ferroelectric Thin Films: Synthesis and Basic Properties, Ch. 6. Gordon & Breach Science Publ; Shur, V.Ya., Guriev, A.V., Bunina, L.V., Subbotin, A.L., Popov, Yu.A., Breakup of the initial domain structure in lead germanate subjected to an electrical field (1988) Sov. Phys. Solid State, 30, p. 1807; Shur, V.Ya., Letuchev, V.V., Popov, Yu.A., Changes in the domain structure of lead germanate single crystals (1982) Sov. Phys. Solid State, 24, p. 1957; Shur, V.Ya., Negashev, S.A., Rumyantsev, E.L., Subbotin, A.L., Demina, A.A., Naumova, I.I., Evolution of regular heterophase structure near transition point (1996) Ferroelectrics, 185, p. 13; Shur, V.Ya., Negashev, S.A., Rumyantsev, E.L., Subbotin, A.L., Makarov, S.D., Elastic light scattering as a probe for detail in situ investigations of domain and phase evolution (1995) Ferroelectrics, 169, p. 63; Shur, V.Ya., Popov, Yu.A., Korovina, N.V., Bound internal field in lead germanate (1984) Sov. Phys. Solid State, 26, p. 471; Shur, V.Ya., Rumyantsev, E.L., Crystal growth and domain structure evolution (1993) Ferroelectrics, 142, p. 1; Shur, V.Ya., Rumyantsev, E.L., Kinetics of ferroelectric domain structure during switching: Theory and experiment (1994) Ferroelectrics, 151, p. 171; Shur, V.Ya., Rumyantsev, E.L., Makarov, S.D., Geometrical transformations of the ferroelectric domain structure in electric field (1995) Ferroelectrics, 172, p. 361; Shur, V.Ya., Rumyantsev, E.L., Makarov, S.D., Volegov, V.V., How to extract information about domain kinetics in thin ferroelectric films from switching transient current data (1994) Integrated Ferroelectrics, 5, p. 293; Shur, V.Ya., Rumyantsev, E.L., Makarov, S.D., Volegov, V.V., Switching in ferroelectric thin films: How to extract information about domain kinetics from traditional current data (1994) Proc. of Ninth IEEE ISAF, p. 669; Shur, V.Ya., Rumyantsev, E.L., Subbotin, A.L., Forming of the domain structure in lead germanate during phase transition (1993) Ferroelectrics, 140, p. 305; Stadler, H.L., Ferroelectric polarization reversal in single crystals (1992) Ferroelectrics, 137, p. 373 |