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Design of microchannel free-space optical interconnects based on vertical-cavity surface-emitting laser arrays

机译:基于垂直腔面发射激光器阵列的微通道自由空间光互连设计

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摘要

We investigate the design of free-space optical interconnects (FSOIs) based on arrays of vertical-cavity surface-emitting lasers (VCSELs), microlenses, and photodetectors. We explain the effect of the modal structure of a multimodeVCSEL beam on the performance of a FSOI with microchannel architecture. A Gaussian-beam diffraction model is used in combination with the experimentally obtained spectrally resolved VCSEL beam profiles to determine the optical channel crosstalk and the signal-to-noise ratio (SNR) in the system. The dependence of the SNR on the feature parameters of a FSOI is investigated. We found that the presence of higher-order modes reduces the SNR and the maximum feasible interconnect distance. We also found that the positioning of a VCSEL array relative to the transmitter microlens has a significant impact on the SNR and the maximum feasible interconnect distance. Our analysis shows that the departure from the traditional confocal system yields several advantages including the extended interconnect distance and/or improved SNR. The results show that FSOIs based on multimode VCSELs can be efficiently utilized in both chip-level and board-level interconnects. (C) 2002 Optical Society of America. [References: 25]
机译:我们研究基于垂直腔表面发射激光器(VCSEL),微透镜和光电探测器阵列的自由空间光学互连(FSOI)的设计。我们解释了多模VCSEL光束的模态结构对具有微通道架构的FSOI性能的影响。将高斯光束衍射模型与通过实验获得的经光谱解析的VCSEL光束轮廓结合使用,以确定系统中的光通道串扰和信噪比(SNR)。研究了信噪比对FSOI特征参数的依赖性。我们发现高阶模式的存在降低了SNR和最大可行互连距离。我们还发现,VCSEL阵列相对于发射器微透镜的定位对SNR和最大可行互连距离有重大影响。我们的分析表明,与传统的共焦系统的不同带来了许多优势,包括扩展的互连距离和/或改善的SNR。结果表明,基于多模式VCSEL的FSOI可以在芯片级和板级互连中得到有效利用。 (C)2002年美国眼镜学会。 [参考:25]

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