Marshall Graham D, Williams Robert J, Jovanovic Nemanja, Steel M J, Withford Michael J
Centre for Ultrahigh bandwidth Devices for Optical Systems (CUDOS), Department of Physics and Astronomy, Macquarie University, North Ryde, New South Wales, Australia.
Opt Express. 2010 Sep 13;18(19):19844-59. doi: 10.1364/OE.18.019844.
The point-by-point technique of fabricating fibre-Bragg gratings using an ultrafast laser enables complete control of the position of each index modification that comprises the grating. By tailoring the local phase, amplitude and spacing of the grating's refractive index modulations it is possible to create gratings with complex transmission and reflection spectra. We report a series of grating structures that were realized by exploiting these flexibilities. Such structures include gratings with controlled bandwidth, and amplitude- and phase-modulated sampled (or superstructured) gratings. A model based on coupled-mode theory provides important insights into the manufacture of such gratings. Our approach offers a quick and easy method of producing complex, non-uniform grating structures in both fibres and other mono-mode waveguiding structures.
使用超快激光制造光纤布拉格光栅的逐点技术能够完全控制构成光栅的每个折射率调制的位置。通过调整光栅折射率调制的局部相位、幅度和间距,可以创建具有复杂透射和反射光谱的光栅。我们报告了一系列通过利用这些灵活性实现的光栅结构。此类结构包括具有可控带宽的光栅以及幅度和相位调制的采样(或超结构)光栅。基于耦合模理论的模型为制造此类光栅提供了重要的见解。我们的方法提供了一种在光纤和其他单模波导结构中快速轻松地制造复杂、非均匀光栅结构的方法。