Upendar S, Ando R F, Schmidt M A, Weiss T
Opt Express. 2021 Mar 15;29(6):8606-8616. doi: 10.1364/OE.416030.
We demonstrate how to reduce the loss in photonic bandgap fibers by orders of magnitude by varying the radius of the corner strands in the core surround. As a fundamental working principle we find that changing the corner strand radius can lead to backscattering of light into the fiber core. Selecting an optimal corner strand radius can thus reduce the loss of the fundamental core mode in a specific wavelength range by almost two orders of magnitude when compared to an unmodified cladding structure. Using the optimal corner radius for each transmission window, we observe the low-loss behavior for the first and second bandgaps, with the losses in the second bandgap being even lower than that of the first one. Our approach of reducing the confinement loss is conceptually applicable to all kinds of photonic bandgap fibers including hollow core and all-glass fibers as well as on-chip light cages. Therefore, our concept paves the way to low-loss light guidance in such systems with substantially reduced fabrication complexity.
我们展示了如何通过改变纤芯周围角向股线的半径,将光子带隙光纤中的损耗降低几个数量级。作为基本工作原理,我们发现改变角向股线半径会导致光反向散射回光纤纤芯。因此,与未修改的包层结构相比,选择最佳角向股线半径可在特定波长范围内将基模纤芯的损耗降低近两个数量级。使用每个传输窗口的最佳角半径,我们观察到第一和第二带隙的低损耗行为,第二带隙中的损耗甚至低于第一带隙。我们降低限制损耗的方法在概念上适用于各种光子带隙光纤,包括空心光纤和全玻璃光纤以及片上光笼。因此,我们的概念为在制造复杂性大幅降低的此类系统中实现低损耗光导铺平了道路。