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硅光子学平台中的毫米级超材料表面发射天线。

Millimeter-long metamaterial surface-emitting antenna in the silicon photonics platform.

作者信息

Ginel-Moreno Pablo, Sánchez-Postigo Alejandro, de-Oliva-Rubio José, Hadij-ElHouati Abdelfettah, Ye Winnie N, Wangüemert-Pérez J Gonzalo, Molina-Fernández Íñigo, Schmid Jens H, Cheben Pavel, Ortega-Moñux Alejandro

出版信息

Opt Lett. 2021 Aug 1;46(15):3733-3736. doi: 10.1364/OL.431983.

Abstract

Integrated optical antennas are key components for on-chip light detection and ranging technology (LIDAR). In order to achieve a highly collimated far field with reduced beam divergence, antenna lengths on the order of several millimeters are required. In the high-index contrast silicon photonics platform, achieving such long antennas typically demands weakly modulated gratings with lithographic minimum feature sizes below 10 nm. Here, we experimentally demonstrate a new, to the best of our knowledge, strategy to make long antennas in silicon waveguides using a metamaterial subwavelength grating (SWG) waveguide core loaded with a lateral periodic array of radiative elements. The mode field confinement is controlled by the SWG duty cycle, and the delocalized propagating mode overlaps with the periodic perturbations. With this arrangement, weak antenna radiation strength can be achieved while maintaining a minimum feature size as large as 80 nm. Using this strategy, we experimentally demonstrate a 2-millimeter-long, single-etched subwavelength-engineered optical antenna on a conventional 220 nm SOI platform, presenting a measured far-field beam divergence of 0.1° and a wavelength scanning sensitivity of 0.13°/nm.

摘要

集成光学天线是片上光探测与测距技术(激光雷达)的关键组件。为了实现具有减小的光束发散角的高度准直远场,需要几毫米量级的天线长度。在高折射率对比度的硅光子学平台中,实现如此长的天线通常需要光刻最小特征尺寸低于10纳米的弱调制光栅。在此,据我们所知,我们通过实验展示了一种新策略,即在加载有横向周期性辐射元件阵列的超材料亚波长光栅(SWG)波导芯的硅波导中制作长天线。模式场限制由SWG占空比控制,并且离域传播模式与周期性微扰重叠。通过这种布置,在保持高达80纳米的最小特征尺寸的同时,可以实现较弱的天线辐射强度。利用该策略,我们在传统的220纳米绝缘体上硅(SOI)平台上通过实验展示了一个2毫米长的、单次蚀刻的亚波长工程光学天线,其测得的远场光束发散角为0.1°,波长扫描灵敏度为0.13°/纳米。

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