Wu Zhiqing, Zhou Xiaoyan, Xia Handing, Shi Zhaohua, Huang Jin, Jiang Xiaodong, Wu Weidong
Appl Opt. 2017 Mar 10;56(8):2288-2293. doi: 10.1364/AO.56.002288.
In this paper, we report a novel low-loss and polarization-maintaining terahertz (THz) photonic crystal fiber with a triple-hole unit inside the core. The properties of birefringence, effective material loss, confinement loss, bending loss, power fraction, dispersion, and single-mode condition are analyzed in detail by using the finite element methods. Simulation results show that high birefringence at a level of 10 can be achieved by simply reducing the diameter of one air hole of the triple-hole core. And low effective material loss down to 30% of its bulk material loss can be achieved in our interested band around 3 THz, due to the high core porosity of the designed triple-hole core. Moreover, this design dramatically facilitates the fabrication process, because of the typical hexagonal structure with all circular air holes and avoiding the troublesome multiple sub-wavelength air holes in the core area. The results reveal that this proposal has potential for efficient THz transmission and other functional applications.
在本文中,我们报道了一种新型的低损耗保偏太赫兹(THz)光子晶体光纤,其纤芯内部具有三孔单元。利用有限元方法详细分析了双折射、有效材料损耗、限制损耗、弯曲损耗、功率分数、色散和单模条件等特性。仿真结果表明,通过简单地减小三孔纤芯中一个气孔的直径,可实现高达10的高双折射。由于所设计的三孔纤芯具有较高的纤芯孔隙率,在我们感兴趣的3太赫兹左右的频段内,有效材料损耗可低至其体材料损耗的30%。此外,这种设计显著简化了制造过程,因为其典型的六边形结构中所有气孔均为圆形,避免了纤芯区域麻烦的多个亚波长气孔。结果表明,该方案在高效太赫兹传输和其他功能应用方面具有潜力。