Opt Lett. 2014 Jan 15;39(2):295-8. doi: 10.1364/OL.39.000295.
Hollow-core-photonic-bandgap fiber, fabricated from high-purity synthetic silica, with a wide operating bandwidth between 3.1 and 3.7 μm, is reported. A minimum attenuation of 0.13 dB/m is achieved through a 19-cell core design with a thin core wall surround. The loss is reduced further to 0.05 dB/m following a purging process to remove hydrogen chloride gas from the fiber-representing more than an order of magnitude loss reduction as compared to previously reported bandgap-guiding fibers operating in the mid-infrared. The fiber also offers a low bend sensitivity of <0.25 dB per 5 cm diameter turn over a 300 nm bandwidth. Simulations are in good agreement with the achieved losses and indicate that a further loss reduction of more than a factor of 2 should be possible by enlarging the core using a 37-cell design.
我们报道了一种由高纯度合成二氧化硅制造的、具有 3.1μm 至 3.7μm 宽工作带宽的空芯光子带隙光纤。通过采用薄壁环绕的 19 芯设计,实现了 0.13dB/m 的最小衰减。通过对光纤进行净化处理以去除氯化氢气体,损耗进一步降低至 0.05dB/m,与之前报道的在中红外波段工作的带隙导光纤相比,损耗降低了一个数量级以上。该光纤还具有低弯曲灵敏度,在 300nm 带宽下每 5cm 直径弯曲产生的损耗小于 0.25dB。模拟结果与实测损耗吻合较好,表明采用 37 芯设计放大光纤芯可进一步将损耗降低 2 倍以上。