Hwang Yongsop, Phillips Nicholas, Otten Dale E, Riesen Nicolas, Lancaster David G
Opt Express. 2022 Apr 11;30(8):12294-12307. doi: 10.1364/OE.452945.
Coupling characteristics between a single mode fiber (SMF) and a waveguide embedded in a glass chip via a graded index fiber (GIF) tip are investigated at a wavelength of 976 nm. The GIF tips comprise a coreless fiber section and a GIF section. A depressed cladding waveguide in a ZBLAN glass chip with a core diameter of 35 μm is coupled with GIF tips that have a range of coreless fiber and GIF lengths. An experimental coupling efficiency as high as 88% is obtained while a numerical simulation predicts 92.9% for the same GIF tip configuration. Since it is measured in the presence of Fresnel reflection, it can be further improved by anti-reflection coating. Additionally, it is demonstrated that a gap can be introduced between the chip waveguide and the GIF tip while maintaining the high coupling efficiency, thus allowing a thin planar optical component to be inserted. The results presented here will enable miniaturization and simplification of photonic chips with integrated waveguides by replacing bulk coupling lenses with integrated optical fibers.
在976nm波长下研究了单模光纤(SMF)与通过渐变折射率光纤(GIF)尖端嵌入玻璃芯片中的波导之间的耦合特性。GIF尖端包括无芯光纤段和GIF段。将芯径为35μm的ZBLAN玻璃芯片中的凹陷包层波导与具有一系列无芯光纤和GIF长度的GIF尖端耦合。实验测得的耦合效率高达88%,而对于相同的GIF尖端配置,数值模拟预测为92.9%。由于它是在存在菲涅尔反射的情况下测量的,因此可以通过抗反射涂层进一步提高。此外,还证明了在保持高耦合效率的同时,可以在芯片波导和GIF尖端之间引入间隙,从而允许插入薄的平面光学元件。这里给出的结果将通过用集成光纤代替体耦合透镜,实现具有集成波导的光子芯片的小型化和简化。