Habib Md Selim, Adamu Abubakar I, Markos Christos, Amezcua-Correa Rodrigo
Opt Express. 2021 Apr 12;29(8):12516-12530. doi: 10.1364/OE.422537.
A hollow-core anti-resonant fiber (HC-ARF) design based on hybrid silica/silicon cladding is proposed for single-polarization, single-mode and high birefringence. We show that by adding silicon layers in a semi-nested HC-ARF, one of the polarization states can be strongly suppressed while simultaneously maintaining low propagation loss for other polarization states, single-mode and high birefiringence. The optimized HC-ARF design exhibits propagation loss, high birefringence, and polarization-extinction ratio of 0.05 dB/m, 0.5 × 10, >300 respectively for y-polarization while the loss of x-polarization is >5 dB/m at 1064 nm. The fiber also has low bend-loss and thus can be coiled to a small bend radii of 5 cm having ≈0.06 dB/m bend loss.
提出了一种基于混合二氧化硅/硅包层的空心反谐振光纤(HC-ARF)设计,以实现单偏振、单模和高双折射。我们表明,通过在半嵌套的HC-ARF中添加硅层,可以强烈抑制其中一个偏振态,同时保持其他偏振态的低传播损耗、单模和高双折射。优化后的HC-ARF设计在1064nm处,y偏振的传播损耗、高双折射和偏振消光比分别为0.05dB/m、0.5×10、>300,而x偏振的损耗>5dB/m。该光纤还具有低弯曲损耗,因此可以卷绕到5cm的小弯曲半径,弯曲损耗约为0.06dB/m。