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Section B: CHARACTERIZATION OF SINGLE CRYSTALS

The Cation Sublattice Ordering in the Ferroelectric LiNbO3:Zn Single Crystals

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Pages 80-86 | Received 02 Sep 2013, Accepted 31 Oct 2013, Published online: 29 Apr 2014

References

  • N.V. Sidorov, T.R. Volk, B.N. Mavrin, and V.T. Kalinnikov, Lithium niobate: defects, photorefraction, vibrational spectra, polaritons. Moscow: Science. (2003).
  • T.S. Chernaya, B.A. Maksimov, T.R. Volk, N.M. Rubinina, and V.I. Simonov, Zn atoms in lithium niobate and the mechanisms of their location. JETP Lett. 73(2), 103–106 (2003).
  • T.S. Chernaya, T.R. Volk, I.A. Verin, and V.I. Simonov, The threshold concentrations of zinc doped lithium niobate crystals and structure position. Cryst Rep. 53(4), 612–617 (2008).
  • F. Xin, G. Zhang, F. Bo, H. Sun, Y. Kong, J. Xu, T. Volk, and N. Rubinina, Ultraviolet photorefraction at 325 nm in doped lithium niobate crystals. J Appl Phys. 107, 033113-1-7 (2010).
  • М. Quintanilla, M. Rodriguez, E. Cantelar, F. Cusso, and C. Domingo, Micrо-Raman characterization of Zn-diffused channel waveguides in Tm3+:LiNbO3. Optics Express. 18(6), 5449–5458 (2010).
  • F. Jermann, M. Simon, and E. Krätzig, Photorefractive properties of congruent and stoichiometric lithium niobate at high light intensities. J Opt Soc Am B. 12, 2066–2070 (1995).
  • R. Nevado, and G. Lifante, Low-loss, damage-resistant optical waveguide in Zn-diffused LiNbO3 by two step procedure. Appl Phys A. 72(6), 725–728 (2001).
  • R. Nevado, C. Sada, F. Segato, F. Caccavale, A. Kling, J. Soares, E. Cantelar, F. Cusso, and G. Lifante, Compositional characterization of Zn-diffused lithium niobate waveguides. Appl Phys B. 73, 555–558 (2001).
  • Y. Zhang, Y.H. Xu, M.N. Li, and Y.Q. Zhao, Growth and properties of Zn doped lithium niobate crystal. J Cryst Growth. 233, 537–540 (2001).
  • L. Zhao, X. Wang, B. Wang, W. Wen, and T. Zhang, ZnO doped LiNbO3 single crystals studies by X-ray and density measurements. Appl Phys B. 78(6), 769–774 (2004).
  • M.N. Palatnikov, The materials of electronic devices based on ferroelectric single crystals and ceramic solid solutions of niobates and tantalates of the alkali metal with micro- and nano-structures. Apatity. (2010).
  • Р. Gunter, Photorefractive materials and their applications. Springer, 2007.
  • V.S. Gorelic, The search of linked and continuous states of ferroelectric crystals by Raman spectra. The PIAS review. 15–140 (1982).
  • N.V. Sidorov, B.N. Mavrin, P.G. Chufyrev, and M.N. Palatnikov, The phonon spectra of lithium niobate single crystals. Apatity: KSC RAS. (2012).
  • A. Ridah, P. Bourson, M.D. Fontana, and G. Malovichko, The composition dependence of the Raman spectrum and new assignment of the phonons in LiNbO3. J Phys: Condens Matter. 9, 9687–9693 (1997).
  • M.-L. Sun, C.-T. Chia, M.-L. Hu, J.Y. Chang, W.-S. Tse, Z.P. Yang, and H.H. Cheng, Raman and IR-spectra of Zn-doped lithium niobate crystals. J Appl Phys. 78(3), 355–358 (2004).
  • V.A. Sandler, N.V. Sidorov, and M.N. Palatnikov, The dielectric crystals: symmetry and physical properties. Apatity: The KSC RAS, Part 2.(2010).
  • A.V. Syuy, M.N. Litvinova, P.S. Goncharova, N.V. Sidorov, M.N. Palatnikov, V.V. Krishtop, and V.V. Likhtin, Conversion of broadband thermal radiation in lithium niobate crystals of various compositions. Tech Phys. 58(5), 730–734 (2013).
  • M.N. Palatnikov, N.V. Sidorov, I.V. Birukova, O.B. Scherbina, and V.T. Kalinnikov, The grained charge for lithium niobate growth. Perspective materials. 2, 93–97 (2011).
  • F. Abdi, M. Aillerie, M. Fontana, P. Bourson, T. Volk, B. Maximov, S. Sulyanov, N. Rubinina, M. Wöhlecke, Influence of Zn doping on electrooptical properties and structure parameters of lithium niobate crystals. Appl Phys B. 68, 795–799 (1999).
  • E.P. Fedorova, L.A. Aleshina, N.V. Sidorov, P.G. Chufyrev, A.A. Yanichev, M.N. Palatnikov, V.M. Voskresenskij, and V.T. Kalinnikov: Stoichiometry and doping effects on cation ordering in LiNbO3 crystals. Inorg Mater. 46(2), 206–211 (2010).

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