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Influence of scattering on transmission through long-period fiber gratings and tunable microstructure fibers

机译:散射对长周期光纤光栅和可调微结构光纤传输的影响

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Controlled optical scattering within or around an optical fiber provides a potentially useful means for adjusting its transmission characteristics. This approach can complement conventional methods based on the establishment of well-defined variations in the index of refraction of the core or the cladding of the fiber. We describe the use of a highly scattering submonolayer of nanoparticles deposited onto the fiber surface for adjusting the resonance wavelength, depth, and width of an in-fiber long-period grating filter. We also introduce a polymer-dispersed liquid-crystal material that has a thermally tunable scattering cross section and can be incorporated into the channels of a microstructure optical fiber; this system may provide the means for a fiber-based scattering switch.
机译:光纤内部或周围的受控光散射为调整其传输特性提供了潜在的有用手段。这种方法可以基于在纤芯或包层的折射率中定义明确的变化来补充传统方法。我们描述了使用沉积在纤维表面的纳米粒子的高散射性亚单分子层来调节纤维内长周期光栅滤光片的共振波长,深度和宽度。我们还介绍了一种聚合物分散的液晶材料,该材料具有热可调的散射横截面,可以掺入微结构光纤的通道中。该系统可以提供用于基于光纤的散射开关的装置。

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