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Original Articles

Raman Probe on PPLN Microstructures

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Pages 26-31 | Accepted 25 May 2008, Published online: 20 Sep 2010

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Read on this site (4)

P.S. Zelenovskiy, V.Ya. Shur, P. Bourson, M.D. Fontana, D.K. Kuznetsov & E.A. Mingaliev. (2010) Raman Study of Neutral and Charged Domain Walls in Lithium Niobate. Ferroelectrics 398:1, pages 34-41.
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V. Ya. Shur. (2010) Domain Nanotechnology in Lithium Niobate and Lithium Tantalate Crystals. Ferroelectrics 399:1, pages 97-106.
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E.I. Shishkin, E.V. Nikolaeva, V.Ya. Shur, M.F. Sarmanova, M.A. Dolbilov, M.S. Nebogatikov, D.O. Alikin, O.A. Plaksin & N.V. Gavrilov. (2010) Abnormal Domain Evolution in Lithium Niobate with Surface Layer Modified by Cu Ion Implantation. Ferroelectrics 399:1, pages 49-57.
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Articles from other publishers (22)

J. Banys, S. Armalytė, J. Pimpė, O. Balachninaitė, V. Jarutis & J. Vengelis. (2024) Subnanosecond microlaser pumped fan-out grating design MgO:PPLN optical parametric generator continuously tunable from near- to mid-infrared. Optics & Laser Technology 171, pages 110433.
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Mahdi Mansour, Walid Bedjaoui & Mohamed Trari. (2024) Effect of γ-rays irradiation on optical and structural properties of the perovskite 128° Y-cut LiNbO3 single crystal. Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms 547, pages 165206.
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Jeongdae Seo, Ho-Hyun Nahm, Heung-Sik Park, Shinhee Yun, Jin Hong Lee, Yong-Jin Kim, Yong-Hyun Kim & Chan-Ho Yang. (2023) Detection of the prototype symmetry of ferroelastic domain walls by angle-resolved polarized Raman spectroscopy . Physical Review B 108:1.
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Anna Grünebohm, Madhura Marathe, Ruben Khachaturyan, Raphael Schiedung, Doru C Lupascu & Vladimir V Shvartsman. (2021) Interplay of domain structure and phase transitions: theory, experiment and functionality. Journal of Physics: Condensed Matter 34:7, pages 073002.
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Thomas Köhler, Matthias Zschornak, Mohamed Zbiri, Juliane Hanzig, Christian Röder, Claudia Funke, Hartmut Stöcker, Erik Mehner & Dirk C. Meyer. (2021) Defect formation in chemically reduced congruent LiTaO 3 : ab initio simulations and inelastic neutron scattering . Journal of Materials Chemistry C 9:38, pages 13484-13499.
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Julian Brockmeier, Peter Walter Martin Mackwitz, Michael Rüsing, Christof Eigner, Laura Padberg, Matteo Santandrea, Christine Silberhorn, Artur Zrenner & Gerhard Berth. (2021) Non-Invasive Visualization of Ferroelectric Domain Structures on the Non-Polar y-Surface of KTiOPO4 via Raman Imaging. Crystals 11:9, pages 1086.
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Yong-Jin Kim, Heung-Sik Park & Chan-Ho Yang. (2021) Raman imaging of ferroelastically configurable Jahn–Teller domains in LaMnO3. npj Quantum Materials 6:1.
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Sven Reitzig, Michael Rüsing, Jie Zhao, Benjamin Kirbus, Shayan Mookherjea & Lukas M. Eng. (2021) “Seeing Is Believing”—In-Depth Analysis by Co-Imaging of Periodically-Poled X-Cut Lithium Niobate Thin Films. Crystals 11:3, pages 288.
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A Krampf, M Imlau, Y Suhak, H Fritze & S Sanna. (2021) Evaluation of similarities and differences of LiTaO 3 and LiNbO 3 based on high-T-conductivity, nonlinear optical fs-spectroscopy and ab initio modeling of polaronic structures . New Journal of Physics 23:3, pages 033016.
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G F Nataf & M Guennou. (2020) Optical studies of ferroelectric and ferroelastic domain walls. Journal of Physics: Condensed Matter 32:18, pages 183001.
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Anyang Cui, Yan Ye, Limei Zheng, Kai Jiang, Liangqing Zhu, Liyan Shang, Yawei Li, Zhigao Hu & Junhao Chu. (2019) Exploring lattice symmetry evolution with discontinuous phase transition by Raman scattering criteria: The single-crystalline model system . Physical Review B 100:2.
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M. Rüsing, S. Neufeld, J. Brockmeier, C. Eigner, P. Mackwitz, K. Spychala, C. Silberhorn, W. G. Schmidt, G. Berth, A. Zrenner & S. Sanna. (2018) Imaging of ferroelectric domain walls in uniaxial ferroelectrics by confocal Raman spectroscopy: Unraveling the contrast mechanism . Physical Review Materials 2:10.
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G F Nataf, N Barrett, J Kreisel & M Guennou. (2018) Raman signatures of ferroic domain walls captured by principal component analysis. Journal of Physics: Condensed Matter 30:3, pages 035902.
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G. F. Nataf, P. Grysan, M. Guennou, J. Kreisel, D. Martinotti, C. L. Rountree, C. Mathieu & N. Barrett. (2016) Low energy electron imaging of domains and domain walls in magnesium-doped lithium niobate. Scientific Reports 6:1.
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Guillaume F. Nataf, Mael Guennou, Alexander Haußmann, Nick Barrett & Jens Kreisel. (2016) Evolution of defect signatures at ferroelectric domain walls in Mg-doped LiNbO 3 . physica status solidi (RRL) - Rapid Research Letters 10:3, pages 222-226.
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M. Rüsing, C. Eigner, P. Mackwitz, G. Berth, C. Silberhorn & A. Zrenner. (2016) Identification of ferroelectric domain structure sensitive phonon modes in potassium titanyl phosphate: A fundamental study. Journal of Applied Physics 119:4.
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Marc D. Fontana & Patrice Bourson. (2015) Microstructure and defects probed by Raman spectroscopy in lithium niobate crystals and devices. Applied Physics Reviews 2:4.
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V. Ya. Shur, A. R. Akhmatkhanov & I. S. Baturin. (2015) Micro- and nano-domain engineering in lithium niobate. Applied Physics Reviews 2:4.
Crossref
S. Sanna, S. Neufeld, M. Rüsing, G. Berth, A. Zrenner & W. G. Schmidt. (2015) Raman scattering efficiency in and crystals . Physical Review B 91:22.
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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.
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P. S. Zelenovskiy, V. Ya. Shur, D. K. Kuznetsov, E. A. Mingaliev, M. Fontana & P. Bourson. (2011) Visualization of nanodomains in lithium niobate single crystals by scanning laser confocal Raman microscopy. Physics of the Solid State 53:1, pages 109-113.
Crossref
P. S. Zelenovskiy, M. D. Fontana, V. Y. Shur, P. Bourson & D. K. Kuznetsov. (2010) Raman visualization of micro- and nanoscale domain structures in lithium niobate. Applied Physics A 99:4, pages 741-744.
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