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Blueprint for Large-Scale Silicon Optical Phased Array Using Electro-Optical Micro-Ring Pixels

机译:使用光电微环像素的大规模硅光学相控阵蓝图

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摘要

We propose a modularized architecture of a large-scale optical phased array (OPA) on a silicon on insulator (SOI) platform, using electro-optical (EO) pixels. Each pixel contains a directional coupler, a micro-ring phase shifter, and a grating optical antenna, on a compact configuration of area 50 μm × 50 μm, with optical and electrical interconnections. Moreover, we present an exemplary blueprint of an OPA consisting of 32 × 32 EO pixels, which sets the width of the main lobe as 0.04° × 0.04° and the field of view as 1.78°. By applying an over-coupled condition, the modulation efficiency and the accompanying intensity modulation are balanced, thus, the OPA performance is not severely degraded. The discussion on the fabrication tolerance shows that the proposed architecture is robust and feasible regarding the state-of-the-art fabrication process, and the performance of the main lobe width and field of view can be further optimized by a larger system size and smaller pixel size. Furthermore, the complexity of interconnections linearly depends on the number of rows and columns, making it highly scalable.
机译:我们提出了使用电光(EO)像素的绝缘体上硅(SOI)平台上的大规模光学相控阵(OPA)的模块化体系结构。每个像素均包含定向耦合器,微环移相器和光栅光学天线,其结构紧凑,面积为50μm××50μm,具有光和电互连。此外,我们给出了一个由32××32×EO像素组成的OPA的示例性蓝图,该图将主瓣的宽度设置为0.04°××0.04°,视场设置为1.78°。通过施加过耦合条件,可以平衡调制效率和随之而来的强度调制,从而不会严重降低OPA性能。关于制造公差的讨论表明,就最新的制造工艺而言,所提出的体系结构是稳健可行的,并且可以通过增大系统尺寸和缩小尺寸来进一步优化主瓣宽度和视场的性能。像素大小。此外,互连的复杂性线性地取决于行和列的数量,从而使其具有高度可伸缩性。

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