Yan M, Shum P
Netwvork Technology Research Centre, Nanyang Technological University, 50 Nanyang Drive, Singapore 637553.
Opt Lett. 2005 Aug 1;30(15):1920-2. doi: 10.1364/ol.30.001920.
We propose an improved photonic crystal (PC) cladding design for existing air-guiding photonic bandgap (PBG) fibers whose cladding airholes are arranged in a triangular lattice pattern. By increasing the sizes of concentrated silica regions in the cladding PC, we can have a larger degree of freedom in controlling the cladding bandgap regions. We predict that a fiber made from this type of cladding would perform better in terms of the PBG-guiding wavelength range, radiation loss owing to finite cladding size, and the ability to avoid surface mode problems.
我们为现有的空气引导光子带隙(PBG)光纤提出了一种改进的光子晶体(PC)包层设计,该光纤的包层气孔以三角形晶格图案排列。通过增加包层光子晶体中集中二氧化硅区域的尺寸,我们在控制包层带隙区域方面可以有更大的自由度。我们预测,由这种类型的包层制成的光纤在PBG引导波长范围、由于包层尺寸有限导致的辐射损耗以及避免表面模式问题的能力方面将表现得更好。