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Spectral modification of type ⅠA fibre Bragg gratings by high power near infra-red lasers

机译:ⅠA型纤维布拉格光谱光谱改造在红外激光器附近的大功率光栅

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We report the first experimental measurements on the spectral modification of Type ⅠA fibre Bragg gratings, incorporated in an optical network, which result from the use of high-power, near infrared lasers. The fibre grating properties are modified in a controlled manner by exploiting the characteristics of the inherent 1400nm absorption band of the optical fibre, which grows in strength during the Type ⅠA grating inscription. If the fibre network is illuminated with a high power laser, having an emission wavelength coincident with the absorption band, the Type ⅠA centre wavelength and chirp can be modified. Furthermore, partial grating erasure is demonstrated. This has serious implications when using Type ⅠA gratings in an optical network, as their spectrum can be modified using purely optical methods (no external heating source acts on the fibre), and to their long-term stability as the grating is shown to decay. Conversely, suitably stabilised gratings can be spectrally tailored, for tuning fibre lasers or edge filter modification in sensing applications, by purely optical means.
机译:我们报告了ⅠA型光纤布拉格光谱光谱改造的第一个实验测量,该测量在光学网络中纳入光学网络,这导致了使用大功率近红外激光器。通过利用光纤固有的1400nm吸收带的特性以受控方式修改光纤光栅特性,这在ⅠA型光栅铭文中生长强度。如果用高功率激光照射光纤网络,则具有与吸收带重合的发光波长,可以修改Ⅰ型中心波长和啁啾。此外,证明了部分光栅擦除。当光学网络中使用ⅠAA光栅时,这具有严重的影响,因为它们的光谱可以使用纯度光学方法(无外部加热源在光纤上发挥作用),并且在光栅上显示它们的长期稳定性被示出为衰减。相反,可以通过纯度光学手段调节光纤激光器或边缘过滤器改造的适当稳定的光栅。

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