Search Results - "Meshkovskiy, Igor K."

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  1. 1

    Thin Cable Fiber-Optic Hydrophone Array for Passive Acoustic Surveillance Applications by Plotnikov, Mikhail Y., Lavrov, Vladimir S., Dmitraschenko, Pavel Y., Kulikov, Andrey V., Meshkovskiy, Igor K.

    Published in IEEE sensors journal (01-05-2019)
    “…Fiber-optic interferometric sensing is a very attractive approach for creating lightweight, high-sensitive, and fully passive fiber-optic hydrophone arrays. In…”
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    Journal Article
  2. 2

    Radiation-resistant optical fiber with oxygen-deficient silica glass core by Eronyan, Mikhail A., Devetyarov, Danila R., Reytskii, Alexander A., Meshkovskiy, Igor K., Untilov, Alexander A., Pechenkin, Alexander A.

    Published in Materials letters (01-06-2021)
    “…•The proposed MCVD fibers technology prevents radiation-induced defects in them.•The oxygen deficiency in silica fiber provides its high radiation…”
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    Journal Article
  3. 3

    Cr2O3 Doping Effect on Silica Glass Cooling Rate by Eronyan, Mikhail A., Parfenov, Peter S., Kulesh, Alexey Yu, Meshkovskiy, Igor K., Untilov, Alexander A.

    Published in SILICON (01-06-2023)
    “…In this paper we present the results on the effect of the SiO 2 melt cooling rate on the morphology of its surface. The method of atomic force microscopy…”
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  4. 4

    Photoelectric Response in Indium-Tin Oxide Films by Makhin, Alexey V., Meshkovskiy, Igor K., Plyastsov, Semyon A.

    Published in IEEE sensors journal (15-09-2017)
    “…In this paper, the mechanism of photoelectric response of indium tin oxide films is discussed. We observed the photoelectric emission in indium tin oxide films…”
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  5. 5

    Congruent Evaporation of Borosilicate Glass Strengthening Silica Fiber by Eronyan, Mikhail A., Kulesh, Alexey Yu, Tsibinogina, Marina K., Glita, Denis V., Untilov, Alexander A., Sitnikova, Vera E., Dukelskiy, Konstantin V., Zlobin, Peter A., Meshkovskiy, Igor K.

    Published in SILICON (01-07-2024)
    “…The work aims to study the evaporation process of borosilicate glass used for strengthening of silica fiber light guides. The composition of glass after…”
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  6. 6

    Inscription of superimposed tilted fiber Bragg gratings by Konnov, Kirill A., Varzhel, Sergey V., Gribaev, Alexey I., Cherepanov, Andrey D., Doubenskaia, Maria A., Meshkovskiy, Igor K.

    Published in Optical and quantum electronics (01-03-2020)
    “…This study focuses on the tilted fiber Bragg gratings. The paper describes the method of their inscription into optical fiber using the Talbot interferometer…”
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  7. 7

    UV-transparent fluoropolymer fiber coating for the inscription of chirped Bragg gratings arrays by Tokarev, Alexey V., Anchutkin, Gordey G., Varzhel, Sergey V., Gribaev, Alexey I., Kulikov, Andrey V., Meshkovskiy, Igor K., Rothhardt, Manfred, Elsmann, Tino, Becker, Martin, Bartelt, Hartmut

    Published in Optics and laser technology (01-03-2017)
    “…A fluoropolymer optical fiber coating based on the thermoplastic copolymer of chlorotrifluoroethylene and vinylidene fluoride is presented. Such coatings can…”
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  8. 8

    Spectral characteristics of draw-tower step-chirped fiber Bragg gratings by Idrisov, Ravil F., Varzhel, Sergey V., Kulikov, Andrey V., Meshkovskiy, Igor K., Rothhardt, Manfred, Becker, Martin, Schuster, Kay, Bartelt, Hartmut

    Published in Optics and laser technology (01-06-2016)
    “…This paper presents research results on the spectral properties of step-chirped fiber Bragg grating arrays written during the fiber drawing process into a…”
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  9. 9
  10. 10

    Polarization extinction ratio in polarization maintaining fiber sealed with glass solder by Kalugin, E.E., Mukhtubaev, A.B., Meshkovskiy, I.K.

    “…The paper considers the effect of sealing with glass solder a pair of optical polarization maintaining fibers with an elliptical stress cladding on the value…”
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  11. 11

    A model of a refractive fiber optic sensor sensing element based on MMF-SMF-MMF structure using surface plasmon resonance by Ivoilov, K.A., Gagarinova, D.O., Zykina, A.A., Meshkovskiy, I.K., Plyastsov, S.A.

    “…This paper presents a mathematical model of the sensitive element of a refractometric fiber-optic sensor the principle of operation of which is based on the…”
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