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通过周期极化钽酸锂中的二次谐波产生实现可调谐紫外辐射。

Tunable ultraviolet radiation by second-harmonic generation in periodically poled lithium tantalate.

作者信息

Meyn J P, Fejer M M

出版信息

Opt Lett. 1997 Aug 15;22(16):1214-6. doi: 10.1364/ol.22.001214.

Abstract

We describe electric-field poling of fine-pitch ferroelectric domain gratings in lithium tantalate and characterization of nonlinear-optical properties by single-pass quasi-phase-matched second-harmonic generation (QPM SHG). With a 7.5-microm-period grating, the observed effective nonlinear coefficient for first-order QPM SHG of 532-nm radiation is 9 pm/V, whereas for a grating with a 2.625-microm period, 2.6 pm/V was observed for second-order QPM SHG of 325-nm radiation. These values are 100% and 55% of the theoretically expected values, respectively. We derive a temperature-dependent Sellmeier equation for lithium tantalate that is valid deeper into the UV than currently available results, based on temperature-tuning experiments at different QPM grating periods combined with refractive-index data in the literature.

摘要

我们描述了钽酸锂中细间距铁电畴光栅的电场极化以及通过单通准相位匹配二次谐波产生(QPM SHG)对其非线性光学特性的表征。对于周期为7.5微米的光栅,在532纳米辐射的一阶QPM SHG中观测到的有效非线性系数为9皮米/伏,而对于周期为2.625微米的光栅,在325纳米辐射的二阶QPM SHG中观测到的有效非线性系数为2.6皮米/伏。这些值分别为理论预期值的100%和55%。基于在不同QPM光栅周期下的温度调谐实验以及文献中的折射率数据,我们推导出了一个适用于钽酸锂的随温度变化的Sellmeier方程,该方程在紫外区域比现有结果具有更深的有效范围。

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