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Optical and Holographic Properties of a Photorefractive Crystal of Lithium Niobate Doped with Iron Ions

Authors

Azamatov Zakirzhan Takhirovich, Yuldoshev Murodzhon Akbarali ugli, Bazarbayev Nurlan Niyatullaevich

Rubric:Physics
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Annotation

The work is devoted to the study of the optical and holographic properties of an iron-doped lithium niobate crystal (LiNbO3:Fe). The research results show that with an increase in the iron impurity concentration, the maximum diffraction efficiency is achieved at a lower exposure. The change in the refractive index of the crystal increased from 10-5 to 5·10-5.

Keywords

refractive index
photosensitivity
photorefractive crystal.
Diffraction efficiency

Authors

Azamatov Zakirzhan Takhirovich, Yuldoshev Murodzhon Akbarali ugli, Bazarbayev Nurlan Niyatullaevich

References:

  1. Азаматов З.Т., Расулов.И.К. Голографическая запись информации на кристаллах ниобата лития // Изв. АН УзССР. Сер.Физ-Мат.Наук. №3. 1984. С.61-63.
  2. Jonhston. W. Optical index damage in LiNbO3 and other phyroelectric insulators // Z.appl.phys. 1970. V. 41. P.3279.
  3. Azamatov Z T, Yuldoshev M A, Bazarbayev N N. Prospects for holographic information storage systems. // DAN AN RUz., № 1. Toshkent 2022, pp. 17-21.
  4. Wong K K 2002 Properties of lithium niobate // The Institution of Electrical Engineers (London, United Kingdom) Book. P. 411.
  5. Khruk A A 2015 Structural disorder and optical processes in lithium niobate crystals with a low  photorefraction effect (Апатиты on Moscow) p 149.
  6. Volk T and Wohlecke M. Lithium Niobate. Defects, Photorefraction and Ferroelectric Switching. Berlin: // Springer; 2008.
  7. Воронов.В.В., Кузьминов.Ю.С., ОсикоВ.В. Оптически индуцированное изменение показателя преломление в сегнетоэлектрических кристаллах и его использование для создания обратимой голографической памяти.// Квантовая электроника. 1976.Т.З С.2101-2126.
  8. Palatnikov M N, Sidorov N V, Makarova O V and Biryukova I V 2017 Fundamental aspects of the technology of highly doped lithium niobate crystals // Institute of Chemistry and Technology of Rare Elements and mineral raw materials. Tananaeva I V. (Апатиты on Moscow) Book. P. 241.
  9. Sidorov N V, Evstratova D V, Palatnikov M N, Syuy A V, Gaponov A Yu and Antonycheva E  A. Investigation of lithium niobate photorefractive properties by photorefractive light scattering and raman spectroscopy. // Ferroelectrics. Copenhagen University Library 2011, pp. 148-155.
  10. Kogelnik H. Coupled Wave Theory for Thick Hologram Gratings // The Bell SYSTEM TECHNICAL JOURNAL. V.48. 1969. P.2909-2946.

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