Chiu Hua-Kung, Hsiao Fu-Li, Chan Chia-Hua, Chen Chii-Chang
Department of Optics and Photonics, National Central University, Jhong-Li 320, Taiwan.
Opt Express. 2008 Sep 15;16(19):15069-73. doi: 10.1364/oe.16.015069.
In this study, a hollow bent waveguide with distributed Bragg reflectors (DBR) in silicon substrate was presented theoretically and experimentally. We used the two-dimensional finite-difference time-domain method to simulate bending transmission efficiencies for arc- and cut-type 90 degrees -bent waveguides. The air core was embedded by Si(3)N(4)/SiO(2) multilayer. The multilayer stacks were deposited by using plasma-enhanced chemical vapor deposition on the top and bottom of air core. The lowest 90 degree bending loss is around 3.9dB for the arc-type bending waveguides and 0.8dB for cut-type bending waveguides, respectively. This waveguide demonstrates a possibility for higher density of integration in planar light wave circuits.
在本研究中,从理论和实验两方面展示了一种在硅衬底上带有分布式布拉格反射器(DBR)的空心弯曲波导。我们使用二维时域有限差分法来模拟弧形和切口型90度弯曲波导的弯曲传输效率。空气芯被Si(3)N(4)/SiO(2)多层结构包裹。多层堆叠通过等离子体增强化学气相沉积法沉积在空气芯的顶部和底部。弧形弯曲波导的最低90度弯曲损耗约为3.9dB,切口型弯曲波导的最低弯曲损耗为0.8dB。这种波导展示了在平面光波电路中实现更高集成密度的可能性。