Chen Nan, Yue Wanglin, Xu Yiming, Guo Wenhui, Xiao Yunpeng, Ren Zhongjie, Ding Xin, Li Ming, Xu Yiran, Wu Tiancheng, Liu Chenxun
School of Electrical Engineering and Automation, Nantong University, Nantong, 226019, China.
School of Science, Nantong University, Nantong, 226019, China.
Sci Rep. 2024 Aug 4;14(1):18017. doi: 10.1038/s41598-024-68995-3.
For the polarization multiplexing requirements in all-optical networks, this work presents a compact all-fiber polarization beam splitter (PBS) based on dual-core photonic crystal fiber (PCF) and an elliptical gold layer. Numerical analysis using the finite element method (FEM) demonstrates that the mode modulation effect of the central gold layer effectively reduces the dimensions of the proposed PBS. By determining reasonable structural parameters of the proposed PCF, the coupling length ratio (CLR) between X- and Y-polarized super-modes can approach 2, achieving a minimal device length of 0.122 mm. The PBS exhibits a maximum extinction ratio (ER) of - 65 dB at 1.55 μm, with an operating bandwidth spanning 100 nm (1.5-1.6 μm) and a stable insertion loss (IL) of ~ 1.5 dB at 1.55 μm. Furthermore, the manufacture feasibility and performance verification scheme are also investigated. It is widely anticipated that the designed PBS will play a crucial role in the ongoing development process of miniaturization and integration of photonic devices.
针对全光网络中的偏振复用需求,本文提出了一种基于双芯光子晶体光纤(PCF)和椭圆形金层的紧凑型全光纤偏振分束器(PBS)。使用有限元方法(FEM)进行的数值分析表明,中心金层的模式调制效应有效地减小了所提出的PBS的尺寸。通过确定所提出的PCF的合理结构参数,X偏振和Y偏振超模之间的耦合长度比(CLR)可以接近2,从而实现0.122 mm的最小器件长度。该PBS在1.55μm处的最大消光比(ER)为 - 65 dB,工作带宽为100 nm(1.5 - 1.6μm),在1.55μm处的插入损耗(IL)稳定在约1.5 dB。此外,还研究了制造可行性和性能验证方案。人们广泛预期,所设计的PBS将在光子器件小型化和集成的持续发展过程中发挥关键作用。