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Practical experience in joining of silica microstructured and telecommunication optical fibers by using field arc fusion splicer kits

V. G. NesterovSaint Petersburg State University of Telecommunications named after M.A. Bonch-Bruevich (Russian Federation)М. А. ОрловSaint Petersburg State University of Telecommunications named after M.A. Bonch-Bruevich (Russian Federation)Anton V. BourdineJSC “Scientific Production Association State Optical Institute Named after Vavilov S.I." (Russian Federation)Alexander S. EvtushenkoPovolzhskiy State University of Telecommunications and Informatics (Russian Federation)Mukhammadzoir S. KhadjaevTashkent University of Information Technology named after Mukhammad al-Khwarizmi (Uzbekistan)Gleb R. BrazovskiiSaint Petersburg State University of Telecommunications named after M.A. Bonch-Bruevich (Russian Federation)Kirill V. OsadchiiMoscow Institute of Physics and Technology (Russian Federation)Dmitry ShurupovJSC “Scientific Production Association State Optical Institute Named after Vavilov S.I." (Russian Federation)Daniil A. SutorinMoscow Institute of Physics and Technology (Russian Federation)Elena S. ZaitsevaSkolkovo Innovation Center (Russian Federation)Michael V. DashkovSkolkovo Innovation Center (Russian Federation)Vladimir V. DemidovJSC “Scientific Production Association State Optical Institute Named after Vavilov S.I." (Russian Federation)С. Ф. ГлаголевSaint Petersburg State University of Telecommunications named after M.A. Bonch-Bruevich (Russian Federation)Alexander Y. Igumenov"T8" LLC (Russian Federation)E. V. PolyakovaSaint Petersburg State University of Telecommunications named after M.A. Bonch-Bruevich (Russian Federation)Andrey B. SemenovMoscow Technical University of Communications and Informatics (Russian Federation)N. A. ShishovaMoscow Technical University of Communications and Informatics (Russian Federation)Egishe V. Ter-NersesyantsJSC “Scientific Production Association State Optical Institute Named after Vavilov S.I." (Russian Federation)Maria S. BylinaSaint Petersburg State University of Telecommunications named after M.A. Bonch-Bruevich (Russian Federation)Konstantin V. DukelskiiSaint Petersburg State University of Telecommunications named after M.A. Bonch-Bruevich (Russian Federation)
2025en
ABI

Annotatsiya

This work presents the results of a series of fusion splices, performed for silica microstructured optical fibers (MOFs) with conventional optical fibers of ITU-T Recommendations by commercially available kits. We tested the following earlier on designed and fabricated three types of MOFs with various configurations, and all of them have outer “telecommunication” diameter 125 &mu;m: six-GeO<sub>2</sub>-doped core MOF, MOF with centralized inclusion of seven GeO<sub>2</sub>- doped capillaries and MOF with equiangular spiral six-ray geometry. Short segment of each type of MOF was spliced between two pig-tails or spools with standard single mode (SMF) or multimode optical fibers (MMF) by using various types of commercially available arc fusion splicer kits and standard “AUTO” program without any modifications of arc current or arc time. Depending on the length of SMF/MMF (pig-tail vs spool), the total insertion loss (two splices and MOF attenuation) was measured by optical power meters or by optical time domain reflectometer (OTDR). The results of described above experiments confirmed the possibility of joining silica MOFs and MMFs by field arc fusion splicers in “AUTO” mode under preserving optical emission guiding properties and achieving an acceptable insertion loss, that provides to utilize them in various testing setups with conventional measurement equipment.

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