Formation of dendrite domain structures in stoichiometric lithium niobate at elevated temperatures / Shur V.Y., Chezganov D.S., Nebogatikov M.S., Baturin I.S., Neradovskiy M.M. // Journal of Applied Physics. - 2012. - V. 112, l. 10.

ISSN:
00218979
Type:
Article
Abstract:
Formation of the dendrite-type self-organized domain structures during polarization reversal at elevated temperatures (above 230°C) has been revealed and studied in stoichiometric lithium niobate LiNbO3 single crystals. Optical, confocal Raman, scanning electron, and piezoelectric force microscopy have been used for domain visualization. It has been shown experimentally that formation of the dendrite-like structures has been attributed to correlated nucleation caused by a field distribution in the vicinity of the charged domain walls. © 2012 American Institute of Physics.
Author keywords:
Index keywords:
Charged domain wall; Confocal Raman; Dendrite-like structure; Domain structure; Domain visualization; Elevated temperature; Field distribution; Piezoelectric force microscopy; Polarization reversals;
DOI:
10.1063/1.4766308
Смотреть в Scopus:
https://www.scopus.com/inward/record.uri?eid=2-s2.0-84870724437&doi=10.1063%2f1.4766308&partnerID=40&md5=54889fc8858bf01d7443f7edc6b37e87
Соавторы в МНС:
Другие поля
Поле Значение
Art. No. 104113
Link https://www.scopus.com/inward/record.uri?eid=2-s2.0-84870724437&doi=10.1063%2f1.4766308&partnerID=40&md5=54889fc8858bf01d7443f7edc6b37e87
Affiliations Ferroelectric Laboratory, Ural Federal University, 51 Leinin ave, Ekaterinburg, Ekaterinburg 620000, Russian Federation; Labfer Ltd, 8 Marta street 2-22, Ekaterinburg 620014, Russian Federation
References Weis, R.S., Gaylord, T.K., (1985) Appl. Phys. A, 37, p. 191. , 10.1007/BF00614817; Sohler, W., Hu, H., Ricken, R., Quiring, V., Vannahme, C., Herrmann, H., Buchter, D., Min, Y., (2008) Opt. Photonics News, 19, p. 24. , 10.1364/OPN.19.1.000024; Byer, R.L., (1997) J. Nonlinear Opt. Phys. Mater., 6, p. 549. , 10.1142/S021886359700040X; Hum, D., Fejer, M., (2007) C. R. Phys., 8, p. 180. , 10.1016/j.crhy.2006.10.022; Mizuuchi, K., Morikawa, A., Sugita, T., Yamamoto, K., (2004) J. Appl. Phys., 96, p. 6585. , 10.1063/1.1811391; Ya. Shur, V., Rumyantsev, E.L., Nikolaeva, E.V., Shishkin, E.I., Fursov, D.V., Batchko, R.G., Eyres, L.A., Byer, R.L., (2000) Appl. Phys. Lett., 76, p. 143. , 10.1063/1.125683; Canalias, C., Pasiskevicius, V., (2007) Nat. Photonics, 1, pp. 459-462. , 10.1038/nphoton.2007.137; Fejer, M.M., Magel, G.A., Jundt, D.H., Byer, R.L., (1992) IEEE J. Quantum Electron., 28, p. 2631. , 10.1109/3.161322; Soergel, E., (2005) Appl. Phys. B, 81, p. 729. , 10.1007/s00340-005-1989-9; Ya. Shur, V., (2005) Nucleation Theory and Applications, , in, edited by J. W. P. Schmelzer (Wiley-VCH Verlag GmbH Co. KGaA, Weinheim); Ya. Shur, V., Lobov, A.I., Shur, A.G., Rumyantsev, E.L., Gallo, K., (2007) Ferroelectrics, 360, p. 111. , 10.1080/00150190701517580; Lobov, A.I., Ya. Shur, V., Baturin, I.S., Shishkin, E.I., Kuznetsov, D.K., Shur, A.G., Dolbilov, M.A., Gallo, K., (2006) Ferroelectrics, 341, p. 109. , 10.1080/00150190600896994; Ya. Shur, V., (2006) J. Mater. Sci., 41, p. 199. , 10.1007/s10853-005-6065-7; Ya. Shur, V., Rumyantsev, E.L., Shur, A.G., Lobov, A.I., Kuznetsov, D.K., Shishkin, E.I., Nikolaeva, E.V., De Micheli, M.P., (2007) Ferroelectrics, 354, p. 145. , 10.1080/00150190701454818; Ya. Shur, V., Kuznetsov, D.K., Mingaliev, E.A., Yakunina, E.M., Lobov, A.I., Ievlev, A.V., (2011) Appl. Phys. Lett., 99, p. 082901. , 10.1063/1.3628646; Kitamura, K., Yamamoto, J.K., Iyi, N., Kirnura, S., Hayashi, T., (1992) J. Cryst. Growth, 116, p. 327. , 10.1016/0022-0248(92)90640-5; Iyi, N., Kitamura, K., Izumi, F., Yamamoto, J.K., Hayashi, T., Asano, H., Kimura, S., (1992) J. Solid State Chem., 101, p. 340. , 10.1016/0022-4596(92)90189-3; Fujiwara, T., Takahashi, M., Ohama, M., Ikushima, A.J., Furukawa, Y., Kitamura, K., (1999) Electron. Lett., 35, p. 499. , 10.1049/el:19990320; Abdi, F., Aillerie, M., Chan, K., Bourson, P., Fontana, M.D., Polgar, K., (1998) J. Appl. Phys., 84, p. 2251. , 10.1063/1.368290; Kondo, Y., Fukuda, T., Yamashita, Y., Yokoyama, K., Arita, K., Watanabe, M., Furukawa, Y., Nakajima, H., (2000) Jpn. J. Appl. Phys., Part 1, 39, p. 1477. , 10.1143/JJAP.39.1477; Furukawa, Y., Kitamura, K., Takekawa, S., Miyamoto, A., Terao, M., Suda, N., (2000) Appl. Phys. Lett., 77, p. 2494. , 10.1063/1.1318721; Gopalan, V., Mitchell, T.E., Furukawa, Y., Kitamura, K., (1998) Appl. Phys. Lett., 72, p. 1981. , 10.1063/1.121491; Grisard, A., Lallier, E., Polgar, K., Peter, A., (2000) Electron. Lett., 36, p. 1043. , 10.1049/el:20000741; Ya. Shur, V., Nikolaeva, E.V., Shishkin, E.I., Kozhevnikov, V.L., Chernykh, A.P., Terabe, K., Kitamura, K., (2001) Appl. Phys. Lett., 79, p. 3146. , 10.1063/1.1416471; Wong, K.K., (2002) Properties of Lithium Niobate, pp. 91-96. , (The Institution of Engineering and Technology); Ya. Shur, V., (2008) Advanced Dielectric, Piezoelectric, and Ferroelectric Materials-Synthesis, Characterization Applications, p. 622. , in, edited by Z. G. Ye (Woodhead Publishing Ltd., Cambridge); Yu, H., Randall, C.A., (1999) J. Appl. Phys., 86, p. 5733. , 10.1063/1.371586; Caccavale, F., Callejo, D., Dragoni, C., Morbiato, A., Musolino, M., Properzi, M., (2004) Proc. SPIE, 5621, p. 77. , 10.1117/12.578239; Gruverman, A., Kalinin, S.V., (2006) J. Mater. Sci., 41, p. 107. , 10.1007/s10853-005-5946-0; Shishkin, E.I., Ievlev, A.V., Nikolaeva, E.V., Nebogatikov, M.S., Ya. Shur, V., (2008) Ferroelectrics, 374, p. 26. , 10.1080/00150190802424769; Ya. Shur, V., Ievlev, A.V., Nikolaeva, E.V., Shishkin, E.I., Neradovskiy, M.M., (2011) J. Appl. Phys., 110, p. 052017. , 10.1063/1.3624798; Zelenovskiy, P., Ya. Shur, V., Bourson, P., Fontana, M.D., Kuznetsov, D.K., Mingaliev, E.A., (2010) Ferroelectrics, 398, p. 34. , 10.1080/00150193.2010.489810; Zelenovskiy, P., Fontana, M., Shur, V., Bourson, P., Kuznetsov, D., (2010) Appl. Phys. A, 99, p. 741. , 10.1007/s00339-010-5621-4; Ya. Shur, V., Zelenovskiy, P.S., Nebogatikov, M.S., Alikin, D.O., Sarmanova, M.F., Ievlev, A.V., Mingaliev, E.A., Kuznetsov, D.K., (2011) J. Appl. Phys., 110, p. 052013. , 10.1063/1.3623778; Ya. Shur, V., Lobov, A.I., Rumyantsev, E.L., Kuznetsov, D.K., (2010) Ferroelectrics, 399, p. 68. , 10.1080/00150193.2010.490291; Baturin, I.S., Konev, M.V., Akhmatkhanov, A.R., Lobov, A.I., Ya. Shur, V., (2008) Ferroelectrics, 374, p. 136. , 10.1080/00150190802427531
Correspondence Address Shur, V.Y.; Ferroelectric Laboratory, Ural Federal University, 51 Leinin ave, Ekaterinburg, Ekaterinburg 620000, Russian Federation; email: vladimir.shur@usu.ru
CODEN JAPIA
Language of Original Document English
Abbreviated Source Title J Appl Phys
Source Scopus