Jean Philippe, Douaud Alexandre, LaRochelle Sophie, Messaddeq Younès, Shi Wei
Opt Express. 2021 Jun 21;29(13):20851-20862. doi: 10.1364/OE.430204.
Silicon subwavelength grating waveguides enable flexible design in integrated photonics through nano-scale refractive index engineering. Here, we explore the possibility of combining silicon subwavelength gratings waveguides with a high-index chalcogenide glass as a top cladding, thus modifying the waveguiding behavior and opening a new design axis for these structures. A detailed investigation of the heterogeneous SWG waveguide with high-index cladding is presented based on analytical and numerical simulations. We design, fabricate and characterize silicon subwavelength grating waveguide microring resonators with an AsS cladding. Thanks to AsS negative thermo-optic coefficient, we achieve near athermal behavior with a measured minimum thermally induced resonance shift of -1.54 pm/K, highlighting the potential of subwavelength grating waveguides for modal confinement engineering and to control light-matter interaction. We also show that the chalcogenide glass can be thermally reflowed to remove air gaps inside the cladding, resulting in a highly conformal structure. These types of waveguides can find application in reconfigurable photonics, nonlinear optics, metamaterials or slow light.
硅亚波长光栅波导通过纳米尺度的折射率工程实现了集成光子学中的灵活设计。在此,我们探索将硅亚波长光栅波导与高折射率硫系玻璃作为顶部包层相结合的可能性,从而改变波导行为并为这些结构开辟新的设计轴。基于解析和数值模拟,对具有高折射率包层的异质SWG波导进行了详细研究。我们设计、制作并表征了带有AsS包层的硅亚波长光栅波导微环谐振器。由于AsS的负热光系数,我们实现了接近无热行为,测得的最小热致谐振位移为-1.54 pm/K,突出了亚波长光栅波导在模式限制工程和控制光与物质相互作用方面的潜力。我们还表明,硫系玻璃可以进行热回流以消除包层内部的气隙,从而形成高度共形的结构。这类波导可应用于可重构光子学、非线性光学、超材料或慢光领域。