Coulombier Quentin, Brilland Laurent, Houizot Patrick, Chartier Thierry, N'guyen Thanh Nam, Smektala Frédéric, Renversez Gilles, Monteville Achille, Méchin David, Pain Thierry, Orain Hervé, Sangleboeuf Jean-Christophe, Trolès Johann
UMR CNRS 6226, Equipe Verres et Céramiques, Campus de Beaulieu, 35042 Rennes Cedex, France.
Opt Express. 2010 Apr 26;18(9):9107-12. doi: 10.1364/OE.18.009107.
We report significant advances in the fabrication of low loss chalcogenide microstructured optical fiber (MOF). This new method, consisting in molding the glass in a silica cast made of capillaries and capillary guides, allows the development of various designs of fibers, such as suspended core, large core or small core MOFs. After removing the cast in a hydrofluoric acid bath, the preform is drawn and the design is controlled using a system applying differential pressure in the holes. Fiber losses, which are the lowest recorded so far for selenium based MOFs, are equal to the material losses, meaning that the process has no effect on the glass quality.
我们报告了低损耗硫族化物微结构光纤(MOF)制造方面的重大进展。这种新方法是将玻璃在由毛细管和毛细管导向器制成的二氧化硅铸型中成型,可开发出各种光纤设计,如悬芯、大芯或小芯MOF。在氢氟酸浴中去除铸型后,拉制预制棒,并使用在孔中施加压差的系统控制设计。光纤损耗是目前基于硒的MOF所记录的最低值,与材料损耗相当,这意味着该工艺对玻璃质量没有影响。