Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
4957042 | Optical Fiber Technology | 2017 | 8 Pages |
Abstract
Three dimensional photonic crystals are a kind of promising sensing materials in biology and chemistry. A compact structure, consists of planner colloidal crystals and 45 degree angle polished fiber, is proposed as a platform for accurate, fast, reliable three dimensional photonic crystals sensing in practice. This structure show advantages in compact size for integration and it is ease for large scale manufacture. Reflectivity of the 45 degree angle polished surface with and without a layer of Ag film are simulated by FDTD simulation. Refractive index sensing properties as well as mode distribution of this structure consists of both polystyrene opal and silica inverse opal film is investigated, and an experimental demonstration of silica inverse opal film is performed, which shows a sensitivity of 733Â nm/RIU. Different kinds of three dimensional photonic crystals can also be applied in this structure for particular purpose.
Related Topics
Physical Sciences and Engineering
Computer Science
Computer Networks and Communications
Authors
Yuqing Guo, Lu Chen, Jiali Zhu, Haibin Ni, Wei Xia, Ming Wang,