Belardi Walter, Knight Jonathan C
Opt Express. 2014 Apr 21;22(8):10091-6. doi: 10.1364/OE.22.010091.
We first use numerical simulations to show that bending losses of hollow antiresonant fibers are a strong function of their geometrical structure. We then demonstrate this by fabricating a hollow antiresonant fiber which presents a bending loss as low as 0.25 dB/turn at a wavelength of 3.35 μm and a bend radius of 2.5 cm. This fiber has a relatively low attenuation (<200 dB/km) over 600 nm mid-infrared spectral range.
我们首先通过数值模拟表明,中空反谐振光纤的弯曲损耗与其几何结构密切相关。然后,我们通过制造一种中空反谐振光纤来证明这一点,该光纤在波长为3.35μm、弯曲半径为2.5cm时,弯曲损耗低至0.25dB/圈。这种光纤在600nm的中红外光谱范围内具有相对较低的衰减(<200dB/km)。