Periodical poling of LiNbO3:MgO by electron beam / Chezganov D.S., Vlasov E.O., Shur V.Y. // Ferroelectrics. - 2017. - V. 508, l. 1. - P. 9-15.

ISSN:
00150193
Type:
Article
Abstract:
We have studied the features of periodical poling by focused electron beam irradiation of MgO-doped lithium niobate (MgOLN) single crystalline plate covered by the resist layer. We have distinguished the main types of the domain structure depending on the irradiated dose. We have revealed that total domain area and width of the domain stripes depend linearly on the dose and irradiated stripe width. We have observed the highly regular domain structures with duty-cycle close to desirable value of 0.5 on both polar surfaces. © 2017 Taylor & Francis Group, LLC.
Author keywords:
electron beam irradiation; Lithium niobate; periodical domain structure; polarization reversal; resist layer
Index keywords:
Irradiation; Niobium compounds; Electron beam irradiation; Lithium niobate; Periodical domain structures; Polarization reversals; Resist layers; Electron beams
DOI:
10.1080/00150193.2017.1286208
Смотреть в Scopus:
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85017619923&doi=10.1080%2f00150193.2017.1286208&partnerID=40&md5=e03f8025928b6246772fd6729ef9a6eb
Соавторы в МНС:
Другие поля
Поле Значение
Link https://www.scopus.com/inward/record.uri?eid=2-s2.0-85017619923&doi=10.1080%2f00150193.2017.1286208&partnerID=40&md5=e03f8025928b6246772fd6729ef9a6eb
Affiliations School of Natural Sciences and Mathematics, Ural Federal University, Ekaterinburg, Russian Federation; Labfer Ltd., Ekaterinburg, Russian Federation
Author Keywords electron beam irradiation; Lithium niobate; periodical domain structure; polarization reversal; resist layer
References Nalwa, H., (2001) Handbook of advanced electronic and photonic materials and devices, , Academy Press, San Diego:; Byer, R.L., Quasi-phasematched nonlinear interactions and devices (1997) J Nonlinear Opt Phys Mater., 6, pp. 549-592; Shur, V.Y., Rumyantsev, E.L., Nikolaeva, E.V., Shishkin, E.I., Fursov, D.V., Batchko, R.G., Eyres, L.A., Sindel, J., Formation of self-organized nanodomain patterns during spontaneous backswitching in lithium niobate (2001) Ferroelectrics., 253, pp. 105-114; Shur, V.Y., Akhmatkhanov, A.R., Baturin, I.S., Micro- and nano-domain engineering in lithium niobate (2015) Appl Phys Rev., 2, p. 40604; Berger, V., Nonlinear photonic crystals (1998) Phys Rev Lett., 81, pp. 4136-4139; Broderick, N.G.R., Ross, G.W., Offerhaus, H.L., Richardson, D.J., Hanna, D.C., Hexagonally poled lithium niobate: A two-dimensional nonlinear photonic crystal (2000) Phys Rev Lett., 84, pp. 4345-4348; Shur, V.Y., Kinetics of ferroelectric domains: Application of general approach to LiNbO3 and LiTaO3 (2006) J Mater Sci., 41, pp. 199-210; Furukawa, Y., Kitamura, K., Takekawa, S., Niwa, K., Hatano, H., Stoichiometric Mg:LiNbO3 as an effective material for nonlinear optics (1998) Opt Lett., 23, p. 1892; Shur, V.Y., Rumyantsev, E.L., Nikolaeva, E.V., Shishkin, E.I., Batchko, R.G., Miller, G.D., Fejer, M.M., Byer, R.L., Regular ferroelectric domain array in lithium niobate crystals for nonlinear optic applications (2000) Ferroelectrics., 236, pp. 129-144; Ishizuki, H., Shoji, I., Taira, T., Periodical poling characteristics of congruent MgO:LiNbO3 crystals at elevated temperature (2003) Appl Phys Lett., 82, pp. 4062-4064; Ito, H., Takyu, C., Inaba, H., Fabrication of periodic domain grating in LiNbO3 by electron beam writing for application of nonlinear optical processes (1991) Electron Lett., 27, p. 1221; Nutt, A.C.G., Gopalan, V., Gupta, M.C., Domain inversion in LiNbO3 using direct electron-beam writing (1992) Appl Phys Lett., 60, p. 2828; Restoin, C., Darraud-Taupiac, C., Decossas, J.L., Vareille, J.C., Hauden, J., Martinez, A., Ferroelectric domain inversion by electron beam on LiNbO3 and Ti:LiNbO3 (2000) J Appl Phys., 88, p. 6665; He, J., Tang, S.H., Qin, Y.Q., Dong, P., Zhang, H.Z., Kang, C.H., Sun, W.X., Shen, Z.X., Two-dimensional structures of ferroelectric domain inversion in LiNbO3 by direct electron beam lithography (2003) J Appl Phys., 93, p. 9943; Kokhanchik, L.S., Borodin, M.V., Shandarov, S.M., Burimov, N.I., Shcherbina, V.V., Volk, T.R., Periodic domain structures formed under electron-beam irradiation in LiNbO3 plates and Ti:LiNbO3 planar waveguides of the Y cut (2010) Phys Solid State., 52, pp. 1722-1730; Kokhanchik, L.S., Palatnikov, M.N., Shcherbina, O.B., Ferroelectric domains in near-stoichiometric LiNbO3 by e-beam polarization reversal (2011) Phase Transitions., 84, pp. 797-803; Kokhanchik, L.S., Volk, T.R., Domain inversion in LiNbO3 and Zn-doped LiNbO3 crystals by the electron-beam irradiation of the nonpolar Y-surface (2013) Appl Phys B., 110, pp. 367-373; Mateos, L., Bausá, L.E., Ramírez, M.O., Two dimensional ferroelectric domain patterns in Yb3+ optically active LiNbO3 fabricated by direct electron beam writing (2013) Appl Phys Lett., 102, p. 42910; Mateos, L., Bausá, L.E., Ramírez, M.O., Micro-spectroscopic characterization of ferroelectric domain structures in Yb3+:LiNbO3 prepared by electron beam writing (2014) Opt Mater Express., 4, p. 1077; Shur, V.Y., Chezganov, D.S., Smirnov, M.M., Alikin, D.O., Neradovskiy, M.M., Kuznetsov, D.K., Domain switching by electron beam irradiation of Z+-polar surface in Mg-doped lithium niobate (2014) Appl Phys Lett., 105, p. 52908; Volk, T.R., Kokhanchik, L.S., Gainutdinov, R.V., Bodnarchuk, Y.V., Borodin, M.V., Lavrov, S.D., Liu, H., Chen, F., Microdomain patterns recorded by an electron beam in He-implanted optical waveguides on X-Cut LiNbO3 crystals (2015) J Light Technol., 33, pp. 4761-4766; Restoin, C., Darraud-Taupiac, C., Decossas, J.-L., Vareille, J.-C., Couderc, V., Barthélémy, A., Martinez, A., Hauden, J., Electron-beam poling on Ti:LiNbO3 (2001) Appl Opt., 40, p. 6056; Glickman, Y., Winebrand, E., Arie, A., Rosenman, G., Electron-beam-induced domain poling in LiNbO3 for two-dimensional nonlinear frequency conversion (2006) Appl Phys Lett., 88, p. 11103; Li, X., Terabe, K., Hatano, H., Kitamura, K., Domain patterning in LiNbO3 and LiTaO3 by focused electron beam (2006) J Cryst Growth., 292, pp. 324-327; Chezganov, D.S., Smirnov, M.M., Kuznetsov, D.K., Shur, V.Y., Electron beam domain patterning of MgO-doped lithium niobate crystals covered by resist layer (2015) Ferroelectrics., 476, pp. 117-126; Shur, V.Y., Chezganov, D.S., Akhmatkhanov, A.R., Kuznetsov, D.K., Domain patterning by electron beam of MgO doped lithium niobate covered by resist (2015) Appl Phys Lett., 106, pp. 3-8; Chezganov, D.S., Kuznetsov, D.K., Shur, V.Y., Simulation of spatial distribution of electric field after electron beam irradiation of MgO-doped LiNbO3 covered by resist layer (2016) Ferroelectrics., 496, pp. 70-78; Chezganov, D.S., Vlasov, E.O., Neradovskiy, M.M., Gimadeeva, L.V., Neradovskaya, E.A., Chuvakova, M.A., Tronche, H., Shur, V.Y., Periodic domain patterning by electron beam of proton exchanged waveguides in lithium niobate (2016) Appl Phys Lett., 108, p. 192903; Shur, V.Y., Lobov, A.I., Shur, A.G., Kurimura, S., Nomura, Y., Terabe, K., Liu, X.Y., Kitamura, K., Rearrangement of ferroelectric domain structure induced by chemical etching (2005) Appl Phys Lett., 87, p. 22905; Fejer, M.M., Magel, G.A., Jundt, D.H., Byer, R.L., Quasi-phase-matched 2nd harmonic-generation - tuning and tolerances (1992) IEEE J Quantum Electron., 28, pp. 2631-2654; Bosenberg, W.R., Drobshoff, A., Alexander, J.I., Myers, L.E., Byer, R.L., 93% pump depletion, 3.5-W continuous-wave, singly resonant optical parametric oscillator (1996) Opt Lett., 21, pp. 1336-1338
Correspondence Address Chezganov, D.S.; School of Natural Sciences and Mathematics, Ural Federal UniversityRussian Federation; email: chezganov.dmitry@urfu.ru
Publisher Taylor and Francis Inc.
CODEN FEROA
Language of Original Document English
Abbreviated Source Title Ferroelectrics
Source Scopus