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Optical Component Coupling using Self-Written Waveguides

机译:使用自写波导的光学元件耦合

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Optical component coupling using self-written waveguides is one of the promising methods to improve the existing alignment control difficulties in optical component coupling. Using conventional UV curable resin as a waveguide material, waveguide spontaneously forms by UV light exposure from an edge of an optical fiber. When UV light is exposed from two faced optical fiber edges, self-written waveguide forms and connect the two optical fibers with decreasing its coupling loss between them. As one interesting feature, optical coupling of the fibers can be attained even significant gap and offset would exist between the fibers. The observed coupling loss after waveguide formation is significantly lower than that before the waveguide formation. Another remarkable feature is that the coupling technique requires no edge treatment of the fibers to be coupled because of similarity of refractive indexes between UV resin and the fibers. Buffer-coated optical fibers are thus coupled using this technique simply after cutting by conventional scissors. The coupling using all solid type self-written waveguides, which have stabilized cladding material can also be achieved though further investigation is necessary to attain low loss waveguides materials. Using this interesting coupling method, conditions required for conventional optical couplings, such as severe alignment control and edge treatment would be significantly relaxed in a optical component coupling procedure.
机译:使用自写波导的光学元件耦合是改善光学元件耦合中的现有对准控制困难的有希望的方法之一。使用传统的UV可固化树脂作为波导材料,通过UV光曝光从光纤的边缘自发地形成波导。当UV光从两个面部光纤边缘暴露时,通过减小其耦合损耗来形成自写波导形成并连接两个光纤。作为一个有趣的特征,纤维的光学耦合即使在纤维之间也存在显着的间隙和偏移。波导形成后观察到的耦合损耗显着低于波导形成前的耦合损耗。另一个显着的特征是,由于UV树脂和纤维之间的折射率相似性,耦合技术不需要纤维的边缘处理耦合。因此,通过传统剪刀切割在切割之后,使用该技术耦合缓冲涂覆的光纤。虽然需要进一步的研究以获得低损耗波导材料,但也可以实现使用所有固体类型的自涂的波导的联接器,其具有稳定的包层材料。使用这种有趣的耦合方法,在光学元件耦合过程中,传统光学耦合所需的条件,例如严重的对准控制和边缘处理将显着松弛。

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