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低串扰半波长间距纳米结构硅波导阵列的设计

Design of a low-crosstalk half-wavelength pitch nano-structured silicon waveguide array.

作者信息

Wang Liping, Chen Ze, Wang Hongfei, Liu Ang, Wang Peng, Lin Tianying, Liu Xiaoping, Lv Haibin

出版信息

Opt Lett. 2019 Jul 1;44(13):3266-3269. doi: 10.1364/OL.44.003266.

Abstract

An ultra-compact half-wavelength pitch silicon waveguide array with very low crosstalk is proposed and analyzed in this work. We first show the design of a pair of low-crosstalk silicon waveguides with only half-wavelength spacing, where the placement of two thin silicon strips asymmetrically in between the waveguides is key to having very low crosstalk. We next extend this nano-structured two-waveguide design to form a low-crosstalk half-wavelength pitch silicon waveguide array. Coupled-mode theory shows that, for an array length of 1 mm, the insertion loss of the input waveguide is as low as -0.13  dB for the TE-like mode at 1550 nm, and the crosstalk in all other waveguides remains below about -18  dB. This half-wavelength pitch waveguide array also exhibits a favorable fabrication error tolerance when taking into account the waveguide width variations in practice. It offers a promising platform for realization of integrated optical phased arrays for solid-state lidars with a large field of view.

摘要

本文提出并分析了一种具有极低串扰的超紧凑半波长间距硅波导阵列。我们首先展示了一对仅具有半波长间距的低串扰硅波导的设计,其中在波导之间不对称地放置两条薄硅条是实现极低串扰的关键。接下来,我们将这种纳米结构的双波导设计扩展为形成一个低串扰的半波长间距硅波导阵列。耦合模理论表明,对于长度为1毫米的阵列,在1550纳米处,类TE模式下输入波导的插入损耗低至-0.13分贝,并且所有其他波导中的串扰保持在约-18分贝以下。考虑到实际中波导宽度的变化,这种半波长间距波导阵列还表现出良好的制造误差容限。它为实现具有大视场的固态激光雷达的集成光学相控阵提供了一个有前景的平台。

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