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Analysis of the effect of transverse modes on free-space optical interconnect performance

机译:横向模式对自由空间光互连性能的影响分析

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摘要

Vertical-cavity surface-emitting lasers (VCSELs) and microlenses can be used to implement free space optical interconnects (FSOIs) which do not suffer from the bandwidth limitations inherent in metallic interconnects. A comprehensive link equation describing the effects of both optical and electrical noise is introduced. We have evaluated FSOI performance by examining the following metrics: the space-bandwidth product (SBP), describing the density of channels and aggregate bandwidth that can be achieved, and the carrier-to-noise ratio (CNR), which represents the relative strength of the carrier signal. The mode expansion method (MEM) was used to account for the primary cause of optical noise: laser beam diffraction. While the literature commonly assumes an ideal single-mode laser beam, we consider the experimentally determined multimodal structure of a VCSEL beam in our calculations. It was found that maximum achievable interconnect length and density for a given CNR was significantly reduced when the higher order transverse modes were present in Simulations. However, the Simulations demonstrate that free-space optical interconnects are still a suitable solution for the communications bottleneck, despite the adverse effects introduced by transverse modes.
机译:垂直腔表面发射激光器(VCSEL)和微透镜可用于实现自由空间光学互连(FSOI),而不受金属互连固有的带宽限制的影响。介绍了描述光和电噪声影响的综合链接方程。我们通过检查以下指标评估了FSOI性能:空间带宽乘积(SBP),描述了可实现的信道密度和聚合带宽,以及代表相对强度的载波噪声比(CNR)载波信号。模式扩展方法(MEM)用于解决光学噪声的主要原因:激光束衍射。虽然文献通常假定理想的单模激光束,但我们在计算中考虑了实验确定的VCSEL光束的多峰结构。已经发现,当在仿真中出现高阶横向模式时,给定CNR的最大可实现互连长度和密度会大大降低。但是,仿真表明,尽管横向模式引入了不利影响,但自由空间光互连仍然是解决通信瓶颈的合适解决方案。

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