Reflection holographic gratings formation in Bi/sub 12/TiO/sub 20/ crystal

E. Ageyev, S. Shandarov, A. A. Mart’yanov, S. Veretennikov, A. M. Plesovskikh
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Abstract

The processes of a space-charge grating formation in photoconductive materials, particularly in photorefractive crystals, have now attracted considerable interest. A majority of the investigations treating two-beam interaction have considered the codirectional geometry. A reflection grating in the (111) cut of Bi/sub 12/TiO/sub 20/ (BTO) crystal was demonstrated previously as useful for real-time dynamic holographic interferometry. The polarization properties of self-diffraction in the reflection geometry for a [00]) cut of selenite crystals have been analyzed by Mallick et al. (1997). In this paper, the authors report the temporal behavior of light beams interacting on photorefractive reflection gratings in a nominally pure BTO crystal. The time evolution of light-induced absorption and two-beam coupling gain is investigated experimentally and theoretically.
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Bi/sub - 12/TiO/sub - 20晶体中反射全息光栅的形成
光导材料中空间电荷光栅的形成过程,特别是在光折变晶体中,已经引起了相当大的兴趣。大多数处理双光束相互作用的研究都考虑了共向几何。Bi/sub - 12/TiO/sub - 20/ (BTO)晶体(111)切口中的反射光栅已被证明可用于实时动态全息干涉测量。Mallick等人(1997)分析了亚硒酸盐晶体的自衍射在反射几何中的偏振特性。在本文中,作者报告了光束在名义上纯BTO晶体中与光折变反射光栅相互作用的时间行为。实验和理论研究了光诱导吸收和双光束耦合增益的时间演化。
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