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Photorefractive properties of lithium and copper in-diffused lithium niobate crystals

机译:锂和铜扩散的铌酸锂晶体的光折变特性

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Near-stoichiometric copper-doped lithium niobate crystals are fabricated by in-diffusion of thin layers of evaporated copper and a subsequent vapor transport equilibration treatment. The crystals are heated in a Li-rich atmosphere to increase the Li content. To determine the photorefractive properties, holographic as well as electrical measurements are performed. Saturation values of the refractive-index changes Deltan(S), bulk photovoltaic current densities j(phv), photoconductivities sigma(ph), and holographic sensitivities S are measured for light intensities up to 10(4) W/m(2). Comparison with experimental data of congruent crystals indicates that the specific photoconductivity is 15 times larger after a vapor transport equilibration treatment. The specific bulk photovoltaic coefficient beta* is 2 times larger, refractive-index changes are 7 times smaller, and the holographic sensitivity is up to 4 times larger. (C) 2002 Optical Society of America. [References: 28]
机译:通过将扩散的蒸发的铜薄层进行内部扩散并随后进行蒸汽传输平衡处理,可以制造出接近化学计量的掺铜铌酸锂晶体。在富锂气氛中加热晶体以增加锂含量。为了确定光折变性质,进行全息和电学测量。对于高达10(4)W / m(2)的光强,测量了折射率变化的饱和值Deltan(S),光伏电流密度j(phv),光电导率sigma(ph)和全息感光度S。与全同晶体的实验数据进行比较表明,在蒸气传输平衡处理之后,比光电导率大15倍。比体积光伏系数beta *大2倍,折射率变化小7倍,全息灵敏度大4倍。 (C)2002年美国眼镜学会。 [参考:28]

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