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Properties of polycrystalline germanium-dioxide for the materials of hollow-core fiber

机译:中空纤维材料用多晶二氧化锗的性能

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Abstract: In this paper, we reported, for the first time to our knowledge, that polycrystalline germanium-dioxide has a n $LS 1 and the extinction coefficient becomes smaller than other materials given at 10.6 $mu@m, n is 0.27 and K is 0.51, we also exactly measured the infrared reflective spectra of polycrystalline germanium-dioxide from the input angle 20 degree to 70 for wavelengths between 2 and 25 $mu@m. Our measuring results are compared with an exact calculation, and the agreement is found to be excellent. On the other hand, in order to study on the properties of polycrystalline germanium-dioxide for the materials of hollow-core fiber in detail, we fabricated a hollow-core fiber by use of this material. After then, we measured the straight optical fiber losses, the transmission properties of the bending fiber and the spot size of the fiber's output beam, we found that the high order mode degenerate quickly with the increase of the length and the nonuniform in the structure of fiber causes the loss of all kinds of modes. We further found that the different focal length of coupling Len causes different bending loss and the diameter of the output beam depends strongly on the existence of transmission mode in the fiber, meantime, the transmission rate of fiber depends strongly on the divergence angle $theta@.!8
机译:【摘要】本文首次报道,据我们所知,多晶二氧化锗具有$ LS 1且消光系数比其他材料给定的10.6 $ mu @ m小,n为0.27,K为0.51时,我们还精确地测量了多晶二氧化锗在2到25μm之间的波长从输入角度20度到70度的红外反射光谱。我们的测量结果与精确计算进行了比较,发现一致性非常好。另一方面,为了详细研究中空纤维材料的多晶二氧化锗的性能,我们使用这种材料制造了中空纤维。然后,我们测量了直的光纤损耗,弯曲光纤的传输特性和光纤输出光束的光斑尺寸,发现随着光纤长度的增加和结构的不均匀性,高阶模态迅速退化。光纤会导致各种模式的损失。我们进一步发现,耦合透镜的不同焦距会导致不同的弯曲损耗,并且输出光束的直径在很大程度上取决于光纤中传输模式的存在,同时,光纤的传输速率在很大程度上取决于发散角$ theta @ 。!8

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