Cho Seonghyeon, Chun Hyunchae
Opt Express. 2021 Aug 30;29(18):28901-28911. doi: 10.1364/OE.434880.
Fluorescent planar concentrators have been proposed as optical concentrators that can have both a wide field of view and a high optical gain stemming from a large collection area for optical wireless communications. However, the fluorescent concentrators with such a large collection area often lead to a low light coupling efficiency due to the edge coupling mechanism leading to a considerable optical power loss. In this work, an analysis of the light coupling efficiency enhancement in the electrical power gain is presented. In particular, a practical method to improve the coupling efficiency by introducing edge and back reflection using Lambertian-, specular-, and retro-reflectors is presented. It is demonstrated that by choosing the optimal reflectors, the received signal strength can be improved by more than a factor of two. Also demonstrated with the proposed method is a data rate more than 1.12 Gbps with bit error rate less than 3.8 × 10 using a DC-biased optical orthogonal frequency division multiplexing. This is, to the best of our knowledge, the first Gbps class demonstration using a commercial fluorescent planar concentrator.
荧光平面聚光器已被提议作为光学聚光器,因其具有大的光收集面积,可用于光无线通信,具备宽视场和高光增益。然而,这种具有大收集面积的荧光聚光器,由于边缘耦合机制会导致相当大的光功率损耗,常常会导致低的光耦合效率。在这项工作中,我们对提高电功率增益中的光耦合效率进行了分析。特别地,提出了一种通过使用朗伯反射器、镜面反射器和后向反射器引入边缘反射和后向反射来提高耦合效率的实用方法。结果表明,通过选择最佳反射器,接收信号强度可提高两倍以上。使用直流偏置光正交频分复用,该方法还证明了数据速率超过1.12 Gbps,误码率小于3.8×10 。据我们所知,这是首次使用商用荧光平面聚光器进行的千兆比特级演示。