Alam Md Koushik, Afsary Noor, Nijhum Zarin Tasnim, Rasel Md Omar Faruk
Appl Opt. 2024 Apr 20;63(12):3265-3271. doi: 10.1364/AO.521414.
Polarization beam splitters are pivotal in manipulating polarized light within photonic integrated circuits for various optical applications. This study introduces a single-mode polarization beam splitter comprising three waveguides realized with polymer materials. The device optimization process employed the beam propagation method, explicitly using the RSoft CAD BeamProp solver. Our proposed beam splitter performs exceptionally well with 99% complete and null light transmission efficiency. In particular, it demonstrates minimal insertion loss (0.04 dB for complete transmission and 0.07 dB for null transmission) and low coupling loss (0.03 dB and 0.04 dB for complete transmission, 21.9 dB and 36.3 dB for null transmission from input to bridge and bridge to output waveguides, respectively). Additionally, the beam splitter showcases significantly reduced crosstalk: -27 and -26.98 for TE modes during complete light transfer, and -36.28 and -33.61 for TM modes during null light transfer. These results underscore its potential for advancing integrated optical systems.
偏振分束器在光子集成电路中操纵偏振光以实现各种光学应用方面起着关键作用。本研究介绍了一种由聚合物材料实现的包含三个波导的单模偏振分束器。该器件优化过程采用了光束传播方法,具体使用了RSoft CAD BeamProp求解器。我们提出的分束器性能卓越,全光传输效率和消光传输效率均达到99%。特别是,它展示出极小的插入损耗(全光传输时为0.04 dB,消光传输时为0.07 dB)和低耦合损耗(全光传输时从输入到桥接波导以及从桥接波导到输出波导分别为0.03 dB和0.04 dB,消光传输时分别为21.9 dB和36.3 dB)。此外,该分束器还表现出显著降低的串扰:全光传输时TE模式下为-27 dB和-26.98 dB,消光传输时TM模式下为-36.28 dB和-33.61 dB。这些结果突出了其在推进集成光学系统方面的潜力。