Wang Zheng, Xu Xiaochuan, Fan Donglei, Wang Yaguo, Subbaraman Harish, Chen Ray T
Materials Science and Engineering Program, Texas Materials Institute, The University of Texas at Austin, Austin, Texas 78712, USA.
Department of Electrical and Computer Engineering, The University of Texas at Austin, 10100 Burnet Rd., MER 160, Austin, Texas 78758, USA.
Sci Rep. 2016 May 5;6:24106. doi: 10.1038/srep24106.
Subwavelength grating (SWG) waveguide is an intriguing alternative to conventional optical waveguides due to the extra degree of freedom it offers in tuning a few important waveguide properties, such as dispersion and refractive index. Devices based on SWG waveguides have demonstrated impressive performances compared to conventional waveguides. However, the high loss of SWG waveguide bends jeopardizes their applications in integrated photonic circuits. In this work, we propose a geometrical tuning art, which realizes a pre-distorted refractive index profile in SWG waveguide bends. The pre-distorted refractive index profile can effectively reduce the mode mismatch and radiation loss simultaneously, thus significantly reduce the bend loss. This geometry tuning art has been numerically optimized and experimentally demonstrated in present study. Through such tuning, the average insertion loss of a 5 μm SWG waveguide bend is reduced drastically from 5.43 dB to 1.10 dB per 90° bend for quasi-TE polarization. In the future, the proposed scheme will be utilized to enhance performance of a wide range of SWG waveguide based photonics devices.
亚波长光栅(SWG)波导是传统光波导的一种有趣替代方案,因为它在调节一些重要的波导特性(如色散和折射率)方面提供了额外的自由度。与传统波导相比,基于SWG波导的器件已展现出令人印象深刻的性能。然而,SWG波导弯曲处的高损耗危及它们在集成光子电路中的应用。在这项工作中,我们提出一种几何调谐技术,它能在SWG波导弯曲处实现预失真的折射率分布。这种预失真的折射率分布可以有效同时降低模式失配和辐射损耗,从而显著降低弯曲损耗。在本研究中,这种几何调谐技术已通过数值优化和实验验证。通过这种调谐,对于准TE偏振,5μm SWG波导每90°弯曲的平均插入损耗从5.43dB大幅降低至1.10dB。未来,所提出的方案将用于提高各种基于SWG波导的光子器件的性能。