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Implications of high power losses in IR femtosecond laser inscribed fibre Bragg gratings

机译:高功率损耗在IR Femtosecond激光铭刻光纤布拉格光栅的影响

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We report on high power issues related to the reliability of fibre Bragg gratings inscribed with an infrared femtosecond laser using the point-by-point writing method. Conventionally, fibre Bragg gratings have usually been written in fibres using ultraviolet light, either holographically or using a phase mask. Since the coating is highly absorbing in the UV, this process normally requires that the protective polymer coating is stripped prior to inscription, with the fibre then being recoated. This results in a time consuming fabrication process that, unless great care is taken, can lead to fibre strength degradation, due to the presence of surface damage. The recent development of FBG inscription using NIR femtosecond lasers has eliminated the requirement for the stripping of the coating. At the same time the ability to write gratings point-by-point offers the potential for great flexibility in the grating design. There is, however, a requirement for reliability testing of these gratings, particularly for use in telecommunications systems where high powers are increasingly being used in long-haul transmission systems making use of Raman amplification. We report on a study of such gratings which has revealed the presence of broad spectrum power losses. When high powers are used, even at wavelengths far removed from the Bragg condition, these losses produce an increase in the fibre temperature due to absorption in the coating. We have monitored this temperature rise using the wavelength shift in the grating itself. At power levels of a few watts, various temperature increases were experienced ranging from a few degrees up to the point where the buffer completely melts off the fibre at the grating site. Further investigations are currently under way to study the optical loss mechanisms in order to optimise the inscription mechanism and minimise such losses.
机译:我们通过点对点写入方法报告与红外飞秒激光器的光纤布拉格光栅可靠性有关的高功率问题。传统上,纤维布拉格光栅通常使用紫外线在紫外线上用纤维写入纤维,或者使用相掩模。由于涂层在UV中吸收高度吸收,因此该方法通常要求保护聚合物涂层在题字之前剥离,然后重新涂覆纤维。这导致耗时的制造过程,除非进行优质,否则可能导致纤维强度降解,由于存在表面损伤。使用NIR Femtosecond激光器的最新开发FBG题字消除了涂料汽提的要求。同时写入光栅点点的能力提供了光栅设计中具有极大灵活性的潜力。然而,存在对这些光栅的可靠性测试的要求,特别是用于电信系统,其中高功率越来越多地用于利用拉曼扩增的长途传输系统。我们报告了对这种光栅的研究,揭示了广谱功率损失的存在。当使用高功率时,即使在从布拉格条件下除去的波长,这些损失也会产生由于涂层中的吸收而产生的纤维温度的增加。我们使用光栅本身中的波长偏移监测了该温度升高。在少数瓦的功率水平,各种温度升高的程度范围从几度到距离在光栅位点处完全熔化纤维的程度。目前正在进行进一步调查来研究光学损耗机制,以优化铭文机制并最大限度地减少这种损失。

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