Search Results - "Salganskii, M.Y."

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  1. 1

    Characteristic Features of Multilayer Photonic Bandgap Fiber Fabrication by Salganskii, M. Yu, Khopin, V. F., Guryanov, A. N., Bubnov, M. M., Likhachev, M. E.

    Published in Inorganic materials (2019)
    “…— We have demonstrated a modified chemical vapor deposition (MCVD) process for the fabrication of multilayer photonic bandgap fiber based on high-purity silica…”
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    Journal Article
  2. 2

    Low-loss singlemode large mode area all-silica photonic bandgap fiber by Février, S, Jamier, R, Blondy, J-M, Semjonov, S L, Likhachev, M E, Bubnov, M M, Dianov, E M, Khopin, V F, Salganskii, M Y, Guryanov, A N

    Published in Optics express (23-01-2006)
    “…We describe the design and characterization of solid core large mode area bandgap fibers exhibiting low propagation loss and low bend loss. The fibers have…”
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    Journal Article
  3. 3

    High power femtosecond chirped pulse amplification in large mode area photonic bandgap Bragg fibers by Daniault, L., Gaponov, D. A., Hanna, M., Février, S., Roy, P., Druon, F., Georges, P., Likhachev, M. E., Salganskii, M. Y., Yashkov, M. V.

    Published in Applied physics. B, Lasers and optics (01-06-2011)
    “…We report on high power amplification of femtosecond pulses in 40-μm core diameter Yb-doped photonic bandgap Bragg fibers. The robustness to bending and…”
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    Journal Article
  4. 4

    Photonic bandgap fibre oscillators and amplifiers by Février, S., Gaponov, D., Devautour, M., Roy, P., Daniault, L., Hanna, M., Papadopoulos, D.N., Druon, F., Georges, P., Likhachev, M.E., Salganskii, M.Y., Yashkov, M.V.

    Published in Optical fiber technology (2010)
    “…In the search for ever higher output power or energy from fibre oscillators or amplifiers a nowadays mature technology relies on enlarging the fibre mode area…”
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    Journal Article
  5. 5
  6. 6

    Large mode area single-mode ytterbium doped all-solid photonic bandgap fiber by Egorova, O.N., Semjonov, S.L., Kosolapov, A.F., Velmiskin, V.V., Pryamikov, A.D., Biriukov, A.S., Salganskii, M.Y., Khopin, V.F., Yashkov, M.V., Gurianov, A.N., Dianov, E.M.

    “…We report on a new fiber design: an ytterbium-doped single-mode all-solid photonic bandgap fiber with a MFD of 18 micrometers. This fiber design has the…”
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    Conference Proceeding
  7. 7

    Mode structure of large mode area all-solid photonic bandgap fiber by Semjonov, S.L., Egorova, O.N., Pryamikov, A.D., Gaponov, D.A., Biriukov, A.S., Dianov, E.M., Salganskii, M.Y., Khopin, V.F., Guryanov, A.N.

    “…We analyze optical properties of all-silica photonic bandgap fibers with an ultra low ratio of the cladding rods diameter to the center-to-center distance of…”
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    Conference Proceeding
  8. 8
  9. 9

    High Power Parabolic Pulse Generation in Dispersion Decreasing Tapered Fibre by Plotski, A., Sysoliatin, A., Salganskii, M.Y., Harper, P., Harrison, J., Turitsyn, S.K., Latkin, A.I.

    “…High-power pulse propagation in fibre with tapered decreasing normal dispersion is studied experimentally and numerically. With appropriate fibre design and…”
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    Conference Proceeding
  10. 10

    Depressed-index-core singlemode bandgap fiber by Jamier, R., Viale, P., Fevrier, S., Blondy, J.-M., Semjonov, S.L., Likhachev, M.E., Bubnov, M.M., Dianov, E.M., Khopin, V.F., Salganskii, M.Y., Guryanov, A.N.

    “…We report on an all-silica singlemode, ultra-broad-core bandgap fiber consisting of a depressed-index-core surrounded by cylindrical dielectric mirror. The…”
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    Conference Proceeding
  11. 11

    Low loss large mode area Bragg fibre by Fevrier, S, Jamier, R, Blondy, J.-M, Semjonov, S.L, Likhachev, M.E, Bubnov, M.M, Dianov, E.M, Khopin, V.F, Salganskii, M.Y, Guryanov, A.N

    “…We report on the loss reduction in large mode area fibres using a mixed total-internal-reflection and bandgap guidance mechanism. A 270-μm2 mode area fibre…”
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    Conference Proceeding