Sánchez-Postigo Alejandro, Gonzalo Wangüemert-Pérez J, Luque-González José Manuel, Molina-Fernández Íñigo, Cheben Pavel, Alonso-Ramos Carlos A, Halir Robert, Schmid Jens H, Ortega-Moñux Alejandro
Opt Lett. 2016 Jul 1;41(13):3013-6. doi: 10.1364/OL.41.003013.
Surface grating couplers enable efficient coupling of light between optical fibers and nanophotonic waveguides. However, in conventional grating couplers, the radiation angle is intrinsically wavelength dependent, thereby limiting their operation bandwidth. In this Letter, we present a zero-order surface grating coupler in silicon-on-insulator which overcomes this limitation by operating in the subwavelength regime. By engineering the effective refractive index of the grating region, both high coupling efficiency and broadband operation bandwidth are achieved. The grating is assisted by a silicon prism on top of the waveguide, which favors upward radiation and minimizes power losses to substrate. Using a linear apodization, our design achieves a coupling efficiency of 91% (-0.41 dB) and a 1-dB bandwidth of 126 nm.
表面光栅耦合器能够实现光在光纤与纳米光子波导之间的高效耦合。然而,在传统光栅耦合器中,辐射角本质上依赖于波长,从而限制了它们的工作带宽。在本信函中,我们展示了一种绝缘体上硅中的零阶表面光栅耦合器,其通过在亚波长区域工作克服了这一限制。通过设计光栅区域的有效折射率,实现了高耦合效率和宽带工作带宽。光栅由波导顶部的硅棱镜辅助,这有利于向上辐射并使向衬底的功率损耗最小化。采用线性切趾法,我们的设计实现了91%(-0.41dB)的耦合效率和126nm的1dB带宽。