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213 nm Nd-YAG pulsed laser damage of non-loaded and hydrogen-loaded silica-based fibers

机译:213nm Nd-yag脉冲激光损伤的非负载和氢负载二氧化硅的纤维

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An automated set-up for 213 nm UV laser damaging in parallel to spectral analyses will be used to show the spectral laser damaging in silica-based fibers with low hydroxyl content. The 213 nm wavelength is ideal, because it is close to the peak wavelength of one of the E'-centers in silica. Due to automation, short-term measurements down to 0.5 s and long-term measurements up to 2 days and more are possible. In addition, the spectral transmission changes are fitted with multiple Gaussian shaped bands. Although the basic attenuation in non-loaded fibers is high, the pulse energies are still high enough to generate defects along a 1 m long fiber. For the first time, to our knowledge, a transfer from E'_γ to E'_β is observed within 1 s, with a laser repetition rate of 2 kHz. Due to optimal fitting, a band around 180 nm is likely influencing the UVC region. In hydrogen-loaded fibers, similar UV defects are seen. The related absorption bands can be optimally adopted to measurement results. The E'-centers play a minor role in short-term measurements because these defects are passivated during hydrogen-loading. Additionally, the band at 328 nm due to molecular chlorine will be reduced. The temporal behavior of all absorption band, including the predicted 180 nm band, are shown.
机译:将使用与光谱分析平行的213nm UV激光激光损坏的自动设置,以显示羟基含量低的基于二氧化硅的纤维中的光谱激光损伤。 213nm波长是理想的,因为它靠近二氧化硅中的一个E'-中心的峰值波长。由于自动化,短期测量降至0.5秒和长期测量,最长可达2天等。另外,光谱传输改变配有多个高斯形状带。尽管非负载纤维中的基本衰减很高,但脉冲能量仍然足够高,以沿1米长纤维产生缺陷。首次涉及我们的知识,在1秒内观察到从e'_γ到e'_β的转移,激光重复率为2kHz。由于最佳装配,围绕180nm的带可能影响UVC区域。在氢负载的纤维中,可以看到类似的UV缺陷。相关吸收带可以最佳地采用测量结果。 E'-Centers在短期测量中发挥了次要作用,因为这些缺陷在氢载荷期间钝化。另外,由于分子氯,328nm处的带将降低。示出了包括预测的180nm频带的所有吸收带的时间行为。

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