Zhang JiaLi, Cao Jie, Yang BoYi, Liu XueSheng, Cheng Yang, Bao Chun, Xie ShangRan, Dong LiQuan, Hao Qun
Opt Express. 2022 May 9;30(10):17437-17450. doi: 10.1364/OE.454263.
Hollow-core negative curvature fibers can confine light within air core and have small nonlinearity and dispersion and high damage threshold, thereby attracting a great deal of interest in the field of hollow core fibers. However, reducing the loss of hollow-core negative curvature fibers is a serious problem. On this basis, three new types of fibers with different nested tube structures are proposed in the near-infrared spectral regions and compared in detail with a previously proposed hollow-core negative curvature fiber. We used finite-element method for numerical simulation studies of their transmission loss, bending loss, and single-mode performance, and then the transmission performance of various structural fibers is compared. We found that the nested elliptical antiresonant fiber 1 has better transmission performance than that of the three other types of fibers in the spectral range of 0.72-1.6 µm. Results show that the confinement loss of the LP mode is as low as 6.45×10 dB/km at λ = 1.06 µm. To the best of our knowledge, the record low level of confinement loss of hollow-core antiresonant fibers with nested tube structures was created. In addition, the nested elliptical antiresonant fiber 1 has better bending resistance, and its bending loss was below 2.99×10 dB/km at 5 cm bending radius.
空心负曲率光纤能够将光限制在空气芯内,具有较小的非线性和色散以及较高的损伤阈值,因此在空心光纤领域引起了广泛关注。然而,降低空心负曲率光纤的损耗是一个严峻的问题。在此基础上,在近红外光谱区域提出了三种具有不同嵌套管结构的新型光纤,并与先前提出的空心负曲率光纤进行了详细比较。我们采用有限元方法对它们的传输损耗、弯曲损耗和单模性能进行了数值模拟研究,然后比较了各种结构光纤的传输性能。我们发现,在0.72 - 1.6 µm光谱范围内,嵌套椭圆反谐振光纤1的传输性能优于其他三种类型的光纤。结果表明,在λ = 1.06 µm时,LP模式的限制损耗低至6.45×10 dB/km。据我们所知,创造了具有嵌套管结构的空心反谐振光纤限制损耗的最低记录水平。此外,嵌套椭圆反谐振光纤1具有更好的抗弯曲性能,在5 cm弯曲半径下其弯曲损耗低于2.99×10 dB/km。