White T P, O'Faolain L, Li Juntao, Andreani L C, Krauss T F
School of Physics and Astronomy, University of St Andrews, St Andrews, Fife, UK.
Opt Express. 2008 Oct 13;16(21):17076-81. doi: 10.1364/oe.16.017076.
We report on the fabrication and characterization of silicon photonic crystal waveguides completely embedded in silica. These waveguides offer a robust alternative to air-membranes and are fully compatible with monolithic integration. Despite the reduced refractive index contrast compared to the air-membranes, these waveguides offer a considerable operating range of approximately 10 nm in the 1550 nm window. While the reduced index contrast weakens the perturbations due to surface roughness, we measure losses of 35 +/- 3dB/cm compared to 12 +/- 3 dB/cm for nominally identical air-membranes. Numerical analysis reveals that the difference in loss results from the different mode distribution and group index of the respective waveguide modes. Radius disorder is used as a fitting parameter in the numerical simulations with the best fits found for disorder levels of 1.4 - 1.7 nm RMS, which attest to the high quality of our structures.
我们报告了完全嵌入二氧化硅中的硅光子晶体波导的制造与特性。这些波导为空气膜提供了一种稳健的替代方案,并且与单片集成完全兼容。尽管与空气膜相比折射率对比度有所降低,但这些波导在1550 nm窗口提供了约10 nm的相当可观的工作范围。虽然折射率对比度的降低减弱了由于表面粗糙度引起的扰动,但我们测得的损耗为35±3 dB/cm,而名义上相同的空气膜的损耗为12±3 dB/cm。数值分析表明,损耗差异源于各自波导模式的不同模式分布和群折射率。在数值模拟中,将半径无序用作拟合参数,发现无序水平为1.4 - 1.7 nm RMS时拟合效果最佳,这证明了我们结构的高质量。