Huang Chia-Chih, Huang Chia-Chien
Department of Electronic Engineering, Tungnan University, No. 152, Sec. 3, Beishen Rd., Shenkeng Dist., New Taipei City, 222, Taiwan, ROC.
Department of Physics and Institute of Nanoscience, National Chung Hsing University, 145, Xingda Rd., Taichung, 402, Taiwan, ROC.
Sci Rep. 2020 Jul 30;10(1):12841. doi: 10.1038/s41598-020-69749-7.
We propose an ultra-short polarization beam splitter (PBS) consisting of two slot waveguides assisted by slotted waveguide subwavelength gratings (SWSWGs), located between the two slotted waveguides. By controlling the optical momentum of evanescent waves with the anisotropic characteristics of the SWSWGs, we considerably suppress and enhance the couplings of transverse-electric (TE) and transverse-magnetic (TM) modes, respectively, concurrently improving performances and reducing length of the proposed PBS, compared with conventional slotted waveguide couplers (CSWCs). Exceptionally, a transition point is found to show almost zero crosstalk between waveguides for the TE mode, i.e., infinite coupling length. Differing from conventional single-material SWGs, the SWSWGs not only simplify the fabrication process but improve polarization extinction ratio (PER). Numerical results demonstrate the improvement in PER (PER) from approximately 13 (23) dB for the CSWCs to 26 (24) dB for the present structure, with a > 70% reduction in device length, operating at the wavelength of λ = 1,550 nm. Our design achieves performance of PER > 25 dB and PER > 20 dB, and insertion loss (IL) < 0.05 dB for TE and < 0.3 dB for TM modes within a bandwidth width (BW) of ~ 50 nm from λ = 1,530 to 1,580 nm. Additionally, geometry deviation is also investigated to assess experimental tolerance. The present idea provides an approach for improving PER, device length, and operating BW of PBSs composed of various waveguide couplers.
我们提出了一种超短偏振分束器(PBS),它由两个狭缝波导组成,并由位于两个狭缝波导之间的狭缝波导亚波长光栅(SWSWG)辅助。通过利用SWSWG的各向异性特性控制倏逝波的光动量,我们分别显著抑制和增强了横向电(TE)模和横向磁(TM)模的耦合,与传统狭缝波导耦合器(CSWC)相比,同时提高了性能并缩短了所提出的PBS的长度。特别地,发现一个过渡点对于TE模在波导之间显示出几乎为零的串扰,即无限耦合长度。与传统的单材料SWG不同,SWSWG不仅简化了制造工艺,还提高了偏振消光比(PER)。数值结果表明,在波长λ = 1550 nm下工作时,PER从CSWC的约13(23)dB提高到本结构的26(24)dB,器件长度减少了70%以上。我们的设计在从λ = 1530到1580 nm的约50 nm带宽(BW)内实现了TE模的PER > 25 dB和TM模的PER > 20 dB,以及插入损耗(IL)< 0.05 dB(TE模)和< 0.3 dB(TM模)。此外,还研究了几何偏差以评估实验容差。本想法为改善由各种波导耦合器组成的PBS的PER、器件长度和工作带宽提供了一种方法。