Gundu Krishna Mohan, Kolesik Miroslav, Moloney Jerome V
College of Optical Sciences, The University of Arizona, Tucson, Arizona 85721-0094, USA.
Opt Lett. 2007 Apr 1;32(7):763-5. doi: 10.1364/ol.32.000763.
We propose a novel multicore fiber design strategy for obtaining a flat in-phase supermode that optimizes utilization of the active medium inversion in the multiple cores. The spatially flat supermode is achieved by engineering the fiber so that the total mutual coupling between neighboring active cores is equal. Different designs suitable for different fabrication processes, such as stack-and-draw and drilling, are proposed. An important improvement over previous methods is the design simplicity and better tolerance to perturbations.
我们提出了一种新颖的多芯光纤设计策略,以获得平坦的同相超模,从而优化多芯中活性介质反转的利用率。通过对光纤进行设计,使相邻活性芯之间的总相互耦合相等,从而实现空间平坦的超模。针对不同的制造工艺,如堆叠拉拔和钻孔,提出了不同的设计方案。相较于先前方法的一个重要改进是设计简单且对扰动的耐受性更好。