Chen Jiaxin, Wang Jinzhao, Li Jiewen, Yao Yong, Sun Yunxu, Tian Jiajun, Zou Yi, Zhao Xiangjie, Xu Xiaochuan
Opt Express. 2021 May 10;29(10):15133-15144. doi: 10.1364/OE.421529.
Because of the high index contrast, current silicon photonics based optical phased arrays cannot achieve small beam divergence and large field-of-view simultaneously without increasing fabrication complexity. To resolve the dilemma, we propose an ultra-long waveguide grating antenna formed by placing subwavelength segments within the evanescent field of a conventional strip waveguide. Bound state in the continuum effect is leveraged to suppress the sidewall emission. As a proof of concept, we theoretically demonstrated a millimeter-long through-etched waveguide grating antenna with a divergence angle of 0.081° and a feature size compatible with current silicon photonics foundries.
由于折射率对比度高,当前基于硅光子学的光学相控阵在不增加制造复杂度的情况下无法同时实现小光束发散角和大视场。为了解决这一难题,我们提出了一种超长波导光栅天线,它由在传统条形波导的倏逝场内放置亚波长段构成。利用连续统中的束缚态效应来抑制侧壁辐射。作为概念验证,我们从理论上证明了一种毫米级长的贯穿蚀刻波导光栅天线,其发散角为0.081°,且特征尺寸与当前的硅光子学制造工艺兼容。