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Twisted Few-Mode Optical Fiber with Improved Height of Quasi-Step Refractive Index Profile.
Bourdine, Anton V; Demidov, Vladimir V; Kuznetsov, Artem A; Vasilets, Alexander A; Ter-Nersesyants, Egishe V; Khokhlov, Alexander V; Matrosova, Alexandra S; Pchelkin, Grigori A; Dashkov, Michael V; Zaitseva, Elena S; Gizatulin, Azat R; Meshkov, Ivan K; Sakhabutdinov, Airat Zh; Dmitriev, Eugeniy V; Morozov, Oleg G; Burdin, Vladimir A; Dukelskii, Konstantin V; Ismail, Yaseera; Petruccione, Francesco; Singh, Ghanshyam; Tiwari, Manish; Yin, Juan.
Afiliação
  • Bourdine AV; Department of Communication Lines, Povolzhskiy State University of Telecommunications and Informatics, 23, Lev Tolstoy Street, Samara 443010, Russia.
  • Demidov VV; JSC "Scientific Production Association State Optical Institute Named after Vavilov S.I.", 36/1, Babushkin Street, St. Petersburg 192171, Russia.
  • Kuznetsov AA; "OptoFiber Lab" LLC, Skolkovo Innovation Center, 7, Nobel Street, Moscow 143026, Russia.
  • Vasilets AA; Department of Photonics and Communication Links, Saint Petersburg State University of Telecommunications Named after M.A. Bonch-Bruevich, 22, Bolshevikov Avenue, St. Petersburg 193232, Russia.
  • Ter-Nersesyants EV; JSC "Scientific Production Association State Optical Institute Named after Vavilov S.I.", 36/1, Babushkin Street, St. Petersburg 192171, Russia.
  • Khokhlov AV; Department of Radiophotonics and Microwave Technologies, Kazan National Research Technical University Named after A.N. Tupolev-KAI, 10, Karl Marx Street, Kazan 420111, Russia.
  • Matrosova AS; Department of Radiophotonics and Microwave Technologies, Kazan National Research Technical University Named after A.N. Tupolev-KAI, 10, Karl Marx Street, Kazan 420111, Russia.
  • Pchelkin GA; Faculty of Management and Engineering Business, Kazan Innovative University Named after V.G. Timiryasov (IEML), 42, Moskovskaya Street, Kazan 420111, Russia.
  • Dashkov MV; JSC "Scientific Production Association State Optical Institute Named after Vavilov S.I.", 36/1, Babushkin Street, St. Petersburg 192171, Russia.
  • Zaitseva ES; JSC "Scientific Production Association State Optical Institute Named after Vavilov S.I.", 36/1, Babushkin Street, St. Petersburg 192171, Russia.
  • Gizatulin AR; JSC "Scientific Production Association State Optical Institute Named after Vavilov S.I.", 36/1, Babushkin Street, St. Petersburg 192171, Russia.
  • Meshkov IK; Faculty of Photonics and Optical Information, School of Photonics, ITMO University, Bldg. A, 49, Kronverksky Alley, St. Petersburg 197101, Russia.
  • Sakhabutdinov AZ; JSC "Scientific Production Association State Optical Institute Named after Vavilov S.I.", 36/1, Babushkin Street, St. Petersburg 192171, Russia.
  • Dmitriev EV; Institute of Physics, Nanotechnology and Telecommunications, Peter the Great St. Petersburg Polytechnic University, Bldg. II, 29, Politekhnicheskaya Street, St. Petersburg 194064, Russia.
  • Morozov OG; Department of Communication Lines, Povolzhskiy State University of Telecommunications and Informatics, 23, Lev Tolstoy Street, Samara 443010, Russia.
  • Burdin VA; Department of Communication Lines, Povolzhskiy State University of Telecommunications and Informatics, 23, Lev Tolstoy Street, Samara 443010, Russia.
  • Dukelskii KV; Department of Telecommunication Systems, Ufa State Aviation Technical University, 12, Karl Marx Street, Ufa 450000, Russia.
  • Ismail Y; Department of Telecommunication Systems, Ufa State Aviation Technical University, 12, Karl Marx Street, Ufa 450000, Russia.
  • Petruccione F; Department of Radiophotonics and Microwave Technologies, Kazan National Research Technical University Named after A.N. Tupolev-KAI, 10, Karl Marx Street, Kazan 420111, Russia.
  • Singh G; Department of Quantum Communication Systems Research, Radio Research and Development Institute, 16, Kazakova Street, Moscow 105064, Russia.
  • Tiwari M; Department of Radiophotonics and Microwave Technologies, Kazan National Research Technical University Named after A.N. Tupolev-KAI, 10, Karl Marx Street, Kazan 420111, Russia.
  • Yin J; Department of Communication Lines, Povolzhskiy State University of Telecommunications and Informatics, 23, Lev Tolstoy Street, Samara 443010, Russia.
Sensors (Basel) ; 22(9)2022 Apr 19.
Article em En | MEDLINE | ID: mdl-35590814
This work presents designed and fabricated silica few-mode optical fiber (FMF) with induced twisting 10 and 66 revolutions per meter, core diameter 11 µm, typical "telecommunication" cladding diameter 125 µm, improved height of quasi-step refractive index profile and numerical aperture 0.22. Proposed FMF supports 4 guided modes over "C"-band. We discussed selection of specified optical fiber parameters to provide desired limited mode number over mentioned wavelength range. Some results of tests, performed with pilot samples of manufactured FMF, are represented, including experimentally measured spectral responses of laser-excited optical signals, that comprise researches and analysis of few-mode effects, occurring after fiber Bragg grating writing.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Sensors (Basel) Ano de publicação: 2022 Tipo de documento: Article País de afiliação: Federação Russa

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Sensors (Basel) Ano de publicação: 2022 Tipo de documento: Article País de afiliação: Federação Russa