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 |