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Study on UV-light-induced absorption in LiNbO_3:Fe,Co crystal

Study on UV-light-induced absorption in LiNbO_3:Fe,Co crystal
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摘要 In this paper, the temporary UV-light-induced absorption in LiNbO3:Fe, Co crystal is investigated for different UV intensities. It is found that the sensitizing process in LiNbO3 :Fe, Co can be considered as a combination of two sub-processes with different time constants. Based on the lattice structure and the photochromic mechanism of the material, the two sub-processes are suggested to arise from electron transfer from O^2- to Fe^3+ through two paths with different distances. The two-colour recording experiment in LiNbO3:Fe, Co is also preformed by using UV and green light as gating and writing beams respectively. High sensitivity is obtained in the recording, which is considered as the consequence of direct charge transfer from O^2- to Fe^3+. In this paper, the temporary UV-light-induced absorption in LiNbO3:Fe, Co crystal is investigated for different UV intensities. It is found that the sensitizing process in LiNbO3 :Fe, Co can be considered as a combination of two sub-processes with different time constants. Based on the lattice structure and the photochromic mechanism of the material, the two sub-processes are suggested to arise from electron transfer from O^2- to Fe^3+ through two paths with different distances. The two-colour recording experiment in LiNbO3:Fe, Co is also preformed by using UV and green light as gating and writing beams respectively. High sensitivity is obtained in the recording, which is considered as the consequence of direct charge transfer from O^2- to Fe^3+.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2010年第8期401-405,共5页 中国物理B(英文版)
基金 Project supported by the Natural Science Foundation of Hebei Province,China(Grant Nos.F2007000119 and F2009000108) the Natural Science Foundation of Tianjin,China(Grant No.09JCYBJC02400) the Scientific Research Foundation of Education Bureau of Hebei Province,China(Grant No.2008113)
关键词 lithium niobate PHOTOCHROMIC charge transfer photorefractive effect lithium niobate, photochromic, charge transfer, photorefractive effect
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