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Solution-Mediated Annealing of Polymer Optical Fiber Bragg Gratings at Room Temperature
23
Citations
20
References
2017
Year
Optical MaterialsEngineeringSolution-mediated AnnealingFiber OpticsMicro-optical ComponentConventional AnnealingPolymer MaterialPolymer TechnologyOptical PropertiesPhotopolymer NetworkMaterials SciencePhotonicsImmersion Inmethanol/water SolutionsFiber Optic SensingPolymer EngineeringFiber OpticGlass FiberRoom TemperaturePolymer ScienceResonance WavelengthOptoelectronics
In this letter, we investigate the response of poly(methylmethacrylate) (PMMA) microstructured polymer optical fiber Bragg gratings (POFBGs) after immersion inmethanol/water solutions at room temperature. As the glass transition temperature of solution-equilibrated PMMA differs from the one of solvent-free PMMA, different concentrations of methanol and water lead to various degrees of frozen-in stress relaxation in the fiber. After solvent evaporation, we observe a permanent blue-shift in the grating resonance wavelength. The main contribution in the resonance wavelength shift arises from a permanent change in the size of the fiber. The results are compared with conventional annealing. The proposed methodology is cost-effective as it does not require a climate chamber. Furthermore, it enables an easy-to-control tuning of the resonance wavelength of POFBGs.
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