Bhatt Gaurang R, Dave Utsav D, Rocha-Rodrigues Janderson, Zadka Moshe, Datta Ipshita, Asenjo-Garcia Ana, Lipson Michal
Opt Lett. 2024 Jul 15;49(14):3918-3921. doi: 10.1364/OL.522808.
Fabrication-induced imperfections in photonic wire waveguides, such as roughness, stitching errors, and discontinuities, degrade their performance and thereby lower the yield of large-scale systems. This degradation is primarily due to the high insertion losses induced by imperfections, which scale nonlinearly with the index contrast in wire waveguides. Here we investigate the influence of discontinuities in photonic waveguides and later show a platform that is robust to fabrication imperfections. Our platform is based on an array of silicon nano-pillars, arranged to form a sub-wavelength (SW) grating waveguide. We focus on investigating the robustness by considering an abrupt break in the waveguide, as an extreme case of discontinuity. We show that sub-wavelength silicon waveguides are robust against unwanted large discontinuities relative to the operating wavelength. We measure a transmission loss of <2.2 dB at 1550 , for a discontinuity of length 2.1 , when compared to more than 7 of loss in conventional silicon wire waveguides for the same discontinuity. Our results show that this mode of protection is broadband, covering the entire telecommunication band (λ =1500-1600 nm). We believe that this investigation of the influence of discontinuities in photonic waveguides could be a step toward the realization of low-loss optical waveguides.
光子线波导制造过程中产生的缺陷,如粗糙度、拼接误差和不连续性,会降低其性能,进而降低大规模系统的成品率。这种性能下降主要是由于缺陷导致的高插入损耗,该损耗与线波导中的折射率对比度呈非线性关系。在此,我们研究了光子波导中不连续性的影响,并展示了一个对制造缺陷具有鲁棒性的平台。我们的平台基于一系列硅纳米柱阵列,这些纳米柱排列形成亚波长(SW)光栅波导。我们通过考虑波导中的突然中断来研究其鲁棒性,这是不连续性的一种极端情况。我们表明,相对于工作波长,亚波长硅波导对不需要的大不连续性具有鲁棒性。对于长度为2.1 的不连续性,在1550 波长处,我们测得的传输损耗小于2.2 dB,而相同不连续性情况下传统硅线波导的损耗超过7 dB。我们的结果表明,这种保护模式是宽带的,覆盖了整个电信频段(λ = 1500 - 1600 nm)。我们相信,对光子波导中不连续性影响的这一研究可能是迈向实现低损耗光波导的一步。