Gao Shou-Fei, Wang Ying-Ying, Liu Xiao-Lu, Hong Chang, Gu Shuai, Wang Pu
Opt Lett. 2017 Jan 1;42(1):61-64. doi: 10.1364/OL.42.000061.
We report on a hollow-core fiber (HCF) whose fundamental transmission band covers almost the whole visible spectral window, starting at 440 nm. This HCF, in the form of a nodeless structure (NL-HCF), exhibits unprecedented optical performance in terms of low transmission attenuation of 80 dB/km at 532 nm, a broad transmission bandwidth from 440 to 1200 nm, a low bending loss of 0.2 dB/m at 532 nm under 8 cm bending radius, and single-mode profile. When launched to high-power picosecond laser systems at 532 nm, the fiber, exposed to ambient air, could easily deliver an 80 ps, 58 MHz, 32 W average power laser pulse with no damage and a 20 ps, 1 kHz high-energy laser pulse with a damage threshold in excess of 144 μJ at a fiber output. A proof-of-concept experiment on Raman spectroscopy in ambient air shows the significance of this broadband visible guiding HCF for interdisciplinary applications in nonlinear optics, ultrafast optics, lasers, spectroscopy, biophotonics, material processing, etc.
我们报道了一种空心光纤(HCF),其基模传输波段几乎覆盖了整个可见光谱窗口,起始波长为440nm。这种无节点结构形式的空心光纤(NL-HCF),在532nm波长处具有80dB/km的低传输衰减、440至1200nm的宽传输带宽、8cm弯曲半径下532nm波长处0.2dB/m的低弯曲损耗以及单模特性,展现出前所未有的光学性能。当将其接入532nm的高功率皮秒激光系统时,暴露在环境空气中的该光纤能够轻松传输80ps、58MHz、32W平均功率的激光脉冲且无损伤,在光纤输出端还能传输20ps、1kHz的高能量激光脉冲,其损伤阈值超过144μJ。在环境空气中进行的拉曼光谱概念验证实验表明,这种宽带可见光导空心光纤对于非线性光学、超快光学、激光、光谱学、生物光子学、材料加工等跨学科应用具有重要意义。