The dependence of optical properties of LiNbO3 crystal on the impurity content studied toward the advancement of volume holographic data storage technology

Research on holographic data storage has been carried out by using continuous wave laser at 632.8. The erasure time constants for continuous readout have been determined. Defect structures of congruent lithium niobate crystal heat-treated at high temperature were identified by optical absorption spe...

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Hauptverfasser: Yukselici, M.H., Asikoglu, A., Bulut, D., Sugak, D., Solskii, I., Syvorotka, I., Zhydachevskii, Ya, Ubizskii, S., Buryy, O.
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creator Yukselici, M.H.
Asikoglu, A.
Bulut, D.
Sugak, D.
Solskii, I.
Syvorotka, I.
Zhydachevskii, Ya
Ubizskii, S.
Buryy, O.
description Research on holographic data storage has been carried out by using continuous wave laser at 632.8. The erasure time constants for continuous readout have been determined. Defect structures of congruent lithium niobate crystal heat-treated at high temperature were identified by optical absorption spectroscopy and the effect of defect bands modified by high temperature heat treatment on the continuous illumination life time of holograms stored in the crystal were studied.
doi_str_mv 10.1109/OMEE.2012.6464804
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The erasure time constants for continuous readout have been determined. Defect structures of congruent lithium niobate crystal heat-treated at high temperature were identified by optical absorption spectroscopy and the effect of defect bands modified by high temperature heat treatment on the continuous illumination life time of holograms stored in the crystal were studied.</abstract><pub>IEEE</pub><doi>10.1109/OMEE.2012.6464804</doi><tpages>2</tpages></addata></record>
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subjects Absorption
Crystals
defect bands
holographic data storage
Holographic optical components
Holography
Lithium niobate
lithium niobate crystal
Optical filters
Optical refraction
title The dependence of optical properties of LiNbO3 crystal on the impurity content studied toward the advancement of volume holographic data storage technology
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