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Widely tunable asymmetric long-period fiber grating with high sensitivity using optical polymer on laser-ablated cladding

机译:使用光学聚合物在激光烧蚀的包层上的高灵敏度宽可调非对称长周期光纤光栅

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摘要

We demonstrate high-efficiency, wideband-tunable, laser-ablated long-period fiber gratings that use an opticalpolymer overlay. Portions of the fiber cladding are periodically removed by CO_(2) laser pulses to induce periodic index changes for coupling the core mode into cladding modes. An optical polymer with a high thermo-optic coefficient with a dispersion distinct from that of silica is used on a deep-ablated cladding structure so that the effective indices of cladding modes become dispersive and the resonant wavelengths can be efficiently tuned. The tuning efficiency can be as high as 15.8 nm/deg C, and the tuning range can be wider than 105 nm (1545-1650 nm).
机译:我们展示了使用光学聚合物覆盖层的高效,宽带可调,激光烧蚀长周期光纤光栅。光纤包层的部分被CO_(2)激光脉冲周期性地去除,以引起周期性的折射率变化,从而将纤芯模式耦合到包层模式。在深烧蚀的包层结构上使用具有高热光系数且色散与二氧化硅不同的光学聚合物,以使包层模式的有效折射率变得分散,并且可以有效地调谐谐振波长。调谐效率可以高达15.8 nm /℃,调谐范围可以大于105 nm(1545-1650 nm)。

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