Statkiewicz-Barabach G, Tarnowski K, Kowal D, Mergo P, Urbanczyk W
Institute of Physics, Wroclaw University of Technology, Wybrzeze Wyspianskiego 27, 50-370 Wroclaw, Poland.
Opt Express. 2013 Apr 8;21(7):8521-34. doi: 10.1364/OE.21.008521.
We demonstrate for the first time a possibility of fabrication of Bragg gratings in polymer microstructured fibers with multiple reflection peaks by using He-Cd laser (λ = 325 nm) and a phase mask with higher diffraction orders. We experimentally studied the growth dynamics of the grating with the primary Bragg peak at λ(B) = 1555 nm, for which we also observed good quality peaks located at λ(B)/2 = 782 nm and 2λ(B)/3 = 1040 nm. Temperature response of all the Bragg peaks was also investigated. Detailed numerical simulations of the interference pattern produced by the phase mask suggests that the higher order Bragg peaks originate from interference of UV beams diffracted in ± 1st, ± 2nd orders. We also demonstrated the grating with the reflection peak at λ(B)/2 = 659 nm, which is the shortest Bragg wavelength ever reported for polymer microstructured fibers. This peak was observed for the grating with primary Bragg wavelength at λ(B) = 1309 nm.
我们首次展示了利用氦镉激光器(λ = 325 nm)和具有更高衍射级次的相位掩膜在具有多个反射峰的聚合物微结构光纤中制造布拉格光栅的可能性。我们通过实验研究了布拉格主峰位于λ(B) = 1555 nm处的光栅的生长动力学,在此过程中我们还观察到位于λ(B)/2 = 782 nm和2λ(B)/3 = 1040 nm处的高质量峰。我们还研究了所有布拉格峰的温度响应。对相位掩膜产生的干涉图样进行的详细数值模拟表明,高阶布拉格峰源自±1级、±2级衍射的紫外光束的干涉。我们还展示了反射峰位于λ(B)/2 = 659 nm处的光栅,这是聚合物微结构光纤中报道过的最短布拉格波长。该峰出现在主布拉格波长为λ(B) = 1309 nm的光栅中。