Domain nanotechnology in lithium niobate and lithium tantalate crystals / Shur V.Ya. // Ferroelectrics. - 2010. - V. 399, l. 1. - P. 97-106.

ISSN:
00150193
Type:
Conference Paper
Abstract:
The recent achievements in study and interpretation of the formation of self-assembled nanodomain structures in the single crystals of lithium niobate and lithium tantalate under the highly non-equilibrium switching conditions have been reviewed. The experimentally used switching conditions include: 1) spontaneous backswitching, 2) modification of the surface layers, and 3) pulse laser irradiation. Various evolution scenarios of nanoscale structures consisting of the oriented chains of isolated nanodomains and the growth of nanodomain rays have been revealed and discussed. It is confirmed that the screening ineffectiveness and switching field value unambiguously determined the proper scenario of domain evolution. Copyright © Taylor & Francis Group, LLC.
Author keywords:
ion implantation; laser irradiation; Lithium niobate; lithium tantalate; nanodomain structures; proton exchange; pulse laser irradiation; self-assembling; surface modification
Index keywords:
Laser irradiations; Lithium niobate; Lithium tantalate; Proton exchange; Pulse laser; Self-assembling; Surface modification; Chemical modification; Ferroelectric materials; Ferroelectricity; Ion excha
DOI:
10.1080/00150193.2010.490290
Смотреть в Scopus:
https://www.scopus.com/inward/record.uri?eid=2-s2.0-77954798318&doi=10.1080%2f00150193.2010.490290&partnerID=40&md5=bdb5d8ba389641b99872428c6bd2e9d8
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Link https://www.scopus.com/inward/record.uri?eid=2-s2.0-77954798318&doi=10.1080%2f00150193.2010.490290&partnerID=40&md5=bdb5d8ba389641b99872428c6bd2e9d8
Affiliations Ferroelectric Laboratory, Ural State University, 620083, Ekaterinburg, Russian Federation
Author Keywords ion implantation; laser irradiation; Lithium niobate; lithium tantalate; nanodomain structures; proton exchange; pulse laser irradiation; self-assembling; surface modification
References Shur, V.Ya., Domain nanotechnology in ferroelectrics: Nano-domain engineering in lithium niobate crystals (2008) Ferroelectrics, 373, pp. 1-10; Shur, V.Ya., Nano- and micro-domain engineering in normal and relaxor ferroelectrics (2008) Advanced Dielectric, Piezoelectric and Ferroelectric Materials - Synthesis, Characterization & Applications, pp. 622-669. , Z. G. Ye (Ed.), Woodhead Publishing Ltd; Byer, R.L., Quasi-phasematched nonlinear interactions and devices (1997) J. of Nonlinear Optic. Phys. & Mater., 6, pp. 549-592; Hum, D.S., Fejer, M.M., Quasi-phasematching (2007) C. R. Physiques, 8, pp. 180-198; Shur, V.Ya., Rumyantsev, E.L., Nikolaeva, E.V., Shishkin, E.I., Fursov, D.V., Batchko, R.G., Eyres, L.A., Byer, R.L., Nanoscale backswitched domain patterning in lithium niobate (2000) Appl. Phys. Lett., 76, pp. 143-145; Shur, V.Ya., Kinetics of ferroelectric domains: Application of general approach to LiNbO3 and LiTaO3 (2006) J. of Mater. Sci., 41, pp. 199-210; Shur, V.Ya., Kuznetsov, D.K., Lobov, A.I., Nikolaeva, E.V., Dolbilov, M.A., Orlov, A.N., Osipov, V.V., Formation of self-similar surface nanodomain structures in lithium niobate under highly non-equilibrium conditions (2006) Ferroelectrics, (341), pp. 85-93; Dolbilov, M.A., Shur, V.Ya., Shishkin, E.I., Sarmanova, M.F., Nikolaeva, E.V., Tascu, S., Baldi, P., DeMicheli, M.P., Influence of surface layers modified by proton exchange on domain kinetics of lithium niobate (2008) Ferroelectrics, 374, pp. 158-163; De Micheli, M.P., Fabrication and characterization of proton exchanged waveguides in periodically poled congruent lithium niobate (2006) Ferroelectrics, 340, pp. 49-62; Nikolaeva, E.V., Shur, V.Ya., Dolbilov, M.A., Shishkin, E.I., Kuznetsov, D.K., Sarmanova, M.F., Plaksin, O.A., Gavrilov, N.V., Formation of nanoscale domain structures and abnormal switching kinetics in lithium niobate with surface layer modified by implantation of copper ions (2008) Ferroelectrics, 374, pp. 73-77; Kuznetsov, D.K., Shur, V.Ya., Negashev, S.A., Lobov, A.I., Pelegov, D.V., Shishkin, E.I., Zelenovskiy, P.S., Osipov, V.V., Formation of nano-scale domain structures in lithium niobate using high-intensity laser irradiation (2008) Ferroelectrics, 373, pp. 133-138; Lobov, A.I., Shur, V.Ya., Kuznetsov, D.K., Negashev, S.A., Pelegov, D.V., Shishkin, E.I., Zelenovskiy, P.S., Discrete switching by growth of nano-scale domain rays under highly-nonequilibrium conditions in lithium niobate single crystals (2008) Ferroelectrics, 373, pp. 99-108; Shur, V.Ya., Kuznetsov, D.K., Lobov, A.I., Pelegov, D.V., Pelegova, E.V., Osipov, V.V., Ivanov, M.G., Orlov, A.N., Self-similar surface nanodomain structures induced by laser irradiation in lithium niobate (2008) Phys. Sol. Stat., 50, pp. 717-723; Shur, V.Ya., Lobov, A.I., Shur, A.G., Rumyantsev, E.L., Gallo, K., Shape evolution of isolated micro-domains in lithium niobate (2007) Ferroelectrics, 360, pp. 111-119; Shur, V.Ya., Correlated nucleation and self-organized kinetics of ferroelectric domains (2005) Nucleation Theory and Applications, pp. 178-214. , J. W. P. Schmelzer (Ed.), Weinheim: WILEY-VCH; Fontana, M.D., Hammoum, R., Bourson, P., Margueron, S., Shur, V.Ya., Raman probe on PPLN microstructures (2008) Ferroelectrics, 373, pp. 26-31; Hammoum, R., Fontana, M.D., Bourson, P., Shur, V.Ya., Raman micro-spectroscopy as a probe to investigate PPLN structures (2007) Ferroelectrics, 352, pp. 106-110; Hammoum, R., Fontana, M.D., Bourson, P., Shur, V.Ya., Characterization of PPLN-microstructures by means of raman spectroscopy (2008) Appl. Phys. A, 91, pp. 65-67; Shur, V., Rumyantsev, E., Batchko, R., Miller, G., Fejer, M., Byer, R., Physical basis of the domain engineering in the bulk ferroelectrics (1999) Ferroelectrics, 221, pp. 157-167
Correspondence Address Shur, V. Ya.; Ferroelectric Laboratory, Ural State University, 620083, Ekaterinburg, Russian Federation; email: vladimir.shur@usu.ru
Conference name 3rd International Symposium on Ferroelectric Domain Structuring, ISDS'09
Conference date 13 September 2009 through 18 September 2009
Conference location Ekaterinburg
Conference code 81192
CODEN FEROA
Language of Original Document English
Abbreviated Source Title Ferroelectrics
Source Scopus