Sadath Md Anwar, Saiful Islam Mohammad, Hossain Md Sanwar, Faisal Mohammad
Appl Opt. 2020 Oct 20;59(30):9385-9392. doi: 10.1364/AO.402530.
This paper presents a low loss suspended core microstructured fiber with ultra-high birefringence for terahertz wave guidance. The finite element method (FEM) with a perfectly matched layer is applied to investigate different important properties including effective material loss (EML), birefringence, dispersion, confinement loss, and percentage of power flow through the core. The suspended elliptical core in the design creates asymmetry and results in an unprecedented value of birefringence. The simulated results using FEM at 1 THz show an extremely ultra-high birefringence (the highest, to the best of our knowledge) of 0.1116, a nominal EML of 0.04716, a negligible confinement loss of 2.65×10, a higher power fraction in the core air of 35%, and an effective modal area of 1.24×10µ. The advancement in technology makes the fabrication possible. The proposed fiber could be used satisfactorily in the terahertz regime for various polarization-preserving applications and coherent communication.
本文提出了一种用于太赫兹波导的具有超高双折射的低损耗悬芯微结构光纤。采用具有完全匹配层的有限元方法(FEM)来研究不同的重要特性,包括有效材料损耗(EML)、双折射、色散、限制损耗以及通过纤芯的功率流百分比。设计中的悬置椭圆形纤芯产生不对称性,导致双折射值达到前所未有的水平。在1太赫兹下使用FEM的模拟结果显示出极高的双折射(据我们所知是最高的),为0.1116,标称有效材料损耗为0.04716,可忽略不计的限制损耗为2.65×10,纤芯空气中更高的功率分数为35%,以及有效模面积为1.24×10µ。技术的进步使得制造成为可能。所提出的光纤可令人满意地用于太赫兹波段的各种保偏应用和相干通信。