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Photorefractive grating formation with very short pulses-The bulk photovoltaic effect

机译:脉冲非常短的光折变光栅形成-整体光伏效应

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We investigated the role of the photovoltaic effect on the photorefractive grating formation under illumination of weak ultra-short light pulses whose duration is much shorter than the time constants of the carrier and compared it with the cw case. In our experiments using mode-locked picosecond and cw Nd:YAG lasers, the bulk photovoltic current in an iron-doped lithium niobate crystal were confirmed to be in the same order of magnitude for both light sources. The evolution of photorefractive gratings was also essentially the same. The Glass expression for the bulk photovoltaic effect is not compatible with the scheme of the band transport model for a very fast response. Therefore we developed a model in which the bulk photovoltaic current was implemented as a spatial shift in the initial carrier distribution. The resultant expression agreed with that of the quasi-cw approximation in the limit of a small spatial shift.
机译:我们研究了在弱超短光脉冲的照射下光伏效应对光折射光栅形成的作用,该超短光脉冲的持续时间比载体的时间常数短得多,并将其与cw情况进行了比较。在我们使用锁模皮秒和连续Nd:YAG激光器进行的实验中,对于两个光源,铁掺杂铌酸锂晶体中的总体光伏电流被确认为相同数量级。光折变光栅的发展也基本相同。大量光电效应的Glass表达式与带传输模型的方案不兼容,因此响应速度非常快。因此,我们开发了一个模型,在该模型中,将光伏电流作为初始载流子分布中的空间偏移。结果表达式在较小的空间偏移范围内与准cw近似的表达式一致。

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