Liu Huabei, Wang Yu, Zhou Yan, Guan Zuguang, Yu Zhangwei, Ling Qiang, Luo Si, Shao Jie, Huang Dongmei, Chen Daru
Opt Express. 2022 Jun 6;30(12):21833-21842. doi: 10.1364/OE.446841.
A novel hollow-core anti-resonant fiber (HC-ARF) with glass-sheet conjoined nested tubes that supports five core modes of LP01-LP31 with low mode couplings, large differential group delays (DGDs), and low bending losses (BLs) is proposed. A novel cladding structure with glass-sheet conjoined nested tubes (CNT) is induced for the proposed HC-ARF which can suppress mode couplings between the LP01-LP31 modes and the cladding modes. The higher-order modes (HOMs) which are LP11-LP31 modes also have very low loss by optimizing the radius of the nested tube and the core radius. Moreover, the large effective refractive index differences Δn between HOMs are all larger than 1 × 10 which contributes to a large DGD in the wavelength range from 1.3 to 1.7 µm. The bending loss of the HC-ARF is analyzed and optimized emphatically. Our calculation results show that bending losses of LP01-LP31 modes are all lower than 3.0 × 10 dB/m in the wavelength range from 1.4 to 1.61 µm even when the fiber bending radius of the HC-ARF is 6 cm.
提出了一种新型的空心反谐振光纤(HC-ARF),其具有玻璃板连体嵌套管,可支持LP01-LP31的五种芯模,具有低模耦合、大差分群时延(DGD)和低弯曲损耗(BL)。为所提出的HC-ARF引入了一种具有玻璃板连体嵌套管(CNT)的新型包层结构,该结构可抑制LP01-LP31模式与包层模式之间的模耦合。通过优化嵌套管的半径和纤芯半径,高阶模(HOMs)即LP11-LP31模式也具有非常低的损耗。此外,HOMs之间大的有效折射率差Δn均大于1×10,这有助于在1.3至1.7 µm波长范围内产生大的DGD。重点分析并优化了HC-ARF的弯曲损耗。我们的计算结果表明,即使HC-ARF的光纤弯曲半径为6 cm,在1.4至1.61 µm波长范围内,LP01-LP31模式的弯曲损耗均低于3.0×10 dB/m。