材料科学
阻带
折射率
光电子学
光学
光纤布拉格光栅
波长
谐振器
物理
作者
Nicholas A. Nobile,Chuanyu Lian,Hong-yi Sun,Yi‐Siou Huang,Brian Mills,Cosmin‐Constantin Popescu,Dennis M. Callahan,Juejun Hu,Carlos Rı́os,Nathan Youngblood
摘要
Bragg gratings offer high-performance filtering and routing of light on-chip through a periodic modulation of a waveguide’s effective refractive index. Here, we model and experimentally demonstrate the use of Sb 2 Se 3 , a nonvolatile and transparent phase-change material, to tune the resonance conditions in two devices which leverage periodic Bragg gratings—a stopband filter and Fabry-Perot cavity. Through simulations, we show that similar refractive indices between silicon and amorphous Sb 2 Se 3 can be used to induce broadband transparency, while the crystalline state can enhance the index contrast in these Bragg devices. Our experimental results show the promise and limitations of this design approach and highlight specific fabrication challenges which need to be addressed in future implementations.
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