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Original Articles

Domain Nanotechnology in Lithium Niobate and Lithium Tantalate Crystals

Pages 97-106 | Received 16 Sep 2009, Accepted 16 Mar 2010, Published online: 23 Jun 2010

Keep up to date with the latest research on this topic with citation updates for this article.

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E. D. Savelyev, A. R. Akhmatkhanov, E. D. Greshnyakov, A. S. Abramov, H. Tronche, F. Doutre, T. Lunghi, P. Baldi, M. M. Neradovskiy & V. Ya. Shur. (2022) Domain growth in LiNbO3 with surface layer modified by soft proton exchange. Ferroelectrics 592:1, pages 64-71.
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M. S. Kosobokov, E. A. Mingaliev, A. V. Makaev, S. V. Avdoshin & V. Ya. Shur. (2019) Formation of the quasi-regular stripe nanodomain structures in lithium tantalate by scanning laser heating. Ferroelectrics 541:1, pages 61-65.
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M. A. Chuvakova, A. R. Akhmatkhanov, I. S. Baturin & V. Ya. Shur. (2019) The bulk screening field in nonstoichiometric lithium tantalate single crystals. Ferroelectrics 541:1, pages 30-38.
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A. P. Turygin, D. O. Alikin, A. S. Abramov, J. Hreščak, J. Walker, A. Bencan, T. Rojac, B. Malic, A. L. Kholkin & V. Ya. Shur. (2017) Characterization of domain structure and domain wall kinetics in lead-free Sr2+ doped K0.5Na0.5NbO3 piezoelectric ceramics by piezoresponse force microscopy. Ferroelectrics 508:1, pages 77-86.
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D. S. Chezganov, E. O. Vlasov, L.V. Gimadeeva, D. O. Alikin, M. A. Chuvakova, E. M. Vaskina & V. Ya. Shur. (2017) Growth of isolated domains induced by focused ion beam irradiation in congruent lithium niobate. Ferroelectrics 508:1, pages 16-25.
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V. Ya. Shur, A. R. Akhmatkhanov & E. V. Pelegova. (2016) Self-organizing formation of dendrite domain structures in lithium niobate and lithium tantalate crystals. Ferroelectrics 500:1, pages 76-89.
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A.A. Esin, A.R. Akhmatkhanov & V.Ya. Shur. (2016) The electronic conductivity in single crystals of lithium niobate and lithium tantalate family. Ferroelectrics 496:1, pages 102-109.
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M. S. Kosobokov, V. Ya. Shur, E. A. Mingaliev, V. R. Karpov & D. K. Kuznetsov. (2016) Formation of the nanodomain structures after pulse laser heating in lithium tantalate: experiment and computer simulation. Ferroelectrics 496:1, pages 120-127.
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M. A. Chuvakova, E. M. Vaskina, A. R. Akhmatkhanov, I. S. Baturin & V. Ya. Shur. (2016) Formation of self-assembled domain structures in single crystals of lithium tantalate with artificial dielectric layer. Ferroelectrics 496:1, pages 92-101.
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M. S. Kosobokov, V. Ya. Shur, E. A. Mingaliev, S. V. Avdoshin & D. K. Kuznetsov. (2015) Self-Organized Nanodomain Structures Arising in Lithium Tantalate and Lithium Niobate after Pulse Heating by Infrared Laser. Ferroelectrics 476:1, pages 134-145.
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D. S. Chezganov, M. M. Smirnov, D. K. Kuznetsov & V. Ya. Shur. (2015) Electron Beam Domain Patterning of MgO-Doped Lithium Niobate Crystals Covered by Resist Layer. Ferroelectrics 476:1, pages 117-126.
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V. Ya. Shur, E.A. Mingaliev, D.K. Kuznetsov & M.S. Kosobokov. (2013) Micro- and Nanodomain Structures Produced by Pulse Laser Heating in Congruent Lithium Tantalate. Ferroelectrics 443:1, pages 95-102.
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Articles from other publishers (13)

Vladimir Ya. Shur, Evgeniy A. Mingaliev, Mikhail S. Kosobokov, Maksim S. Nebogatikov, Alexey I. Lobov & Andrey V. Makaev. (2020) Self-assembled shape evolution of the domain wall and formation of nanodomain wall traces induced by multiple IR laser pulse irradiation in lithium niobate. Journal of Applied Physics 127:9.
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L.I. Stefanovich, O.Y. Mazur & V.V. Sobolev. (2019) Formation of Regular Domain Structures in Quenched Ferroelectrics Under the Influence of an External High-frequency Electric Field. Nanoscience & Nanotechnology-Asia 9:3, pages 344-352.
Crossref
Olga Mazur, Leonid Stefanovich & Marharyta Lakusta. (2019) Influence of the Quenching Temperature on the Ferroelectric Regular Domain Structure Formation. Influence of the Quenching Temperature on the Ferroelectric Regular Domain Structure Formation.
V. Ya. Shur, A. R. Akhmatkhanov, M. A. Chuvakova, M. A. Dolbilov, P. S. Zelenovskiy & A. I. Lobov. (2017) Formation of self-organized domain structures with charged domain walls in lithium niobate with surface layer modified by proton exchange. Journal of Applied Physics 121:10.
Crossref
A. V. Golenishchev-Kutuzov, V. A. Golenishchev-Kutuzov, R. I. Kalimullin & A. V. Semennikov. (2017) Dynamics of photo-induced changes in the elastic characteristics of lithium niobate crystals doped with Jahn–Teller Fe2+ ions. Physics of the Solid State 59:2, pages 304-309.
Crossref
V. Ya. Shur, M. S. Kosobokov, E. A. Mingaliev, D. K. Kuznetsov & P. S. Zelenovskiy. (2016) Formation of snowflake domains during fast cooling of lithium tantalate crystals. Journal of Applied Physics 119:14.
Crossref
Anna N. Morozovska, Anton V. Ievlev, Vyacheslav V. Obukhovskii, Yevhen Fomichov, Oleksandr V. Varenyk, Vladimir Ya. Shur, Sergei V. Kalinin & Eugene A. Eliseev. (2016) Self-consistent theory of nanodomain formation on nonpolar surfaces of ferroelectrics. Physical Review B 93:16.
Crossref
V. Ya. Shur, A. R. Akhmatkhanov & I. S. Baturin. (2015) Micro- and nano-domain engineering in lithium niobate. Applied Physics Reviews 2:4.
Crossref
M. S. Kosobokov, V. Ya. Shur, E. A. Mingaliev & S. V. Avdoshin. (2015) Formation of self-organized nanodomain structures in lithium niobate after pulsed infrared laser heating. Physics of the Solid State 57:10, pages 2020-2024.
Crossref
Vladimir Shur, Andrey Akhmatkhanov, Alexey Lobov & Anton Turygin. (2015) Self-assembled domain structures: From micro- to nanoscale. Journal of Advanced Dielectrics 05:02, pages 1550015.
Crossref
V. Ya. Shur & P. S. Zelenovskiy. (2014) Micro- and nanodomain imaging in uniaxial ferroelectrics: Joint application of optical, confocal Raman, and piezoelectric force microscopy. Journal of Applied Physics 116:6.
Crossref
V. Ya. Shur, V. A. Shikhova, P. S. Zelenovskiy, D. V. Pelegov, L. I. Ivleva & J. Dec. (2014) Formation of self-assembled nanodomain structures in single crystals of uniaxial ferroelectrics lithium niobate, lithium tantalate and strontium–barium niobate. Journal of Advanced Dielectrics 04:01, pages 1450006.
Crossref
V. Ya. Shur, P. S. Zelenovskiy, M. S. Nebogatikov, D. O. Alikin, M. F. Sarmanova, A. V. Ievlev, E. A. Mingaliev & D. K. Kuznetsov. (2011) Investigation of the nanodomain structure formation by piezoelectric force microscopy and Raman confocal microscopy in LiNbO3 and LiTaO3 crystals. Journal of Applied Physics 110:5.
Crossref

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