Furnace chemical vapor deposition bismuth-doped silica-core holey fiber

A. S. Zlenko*, V. V. Dvoyrin, V. M. Mashinsky, A. N. Denisov, L. D. Iskhakova, M. S. Mayorova, O. I. Medvedkov, S. L. Semenov, S. A. Vasiliev, E. M. Dianov

*Corresponding author for this work

Research output: Contribution to journalArticle

Abstract

A bismuth-doped-pure-silica holey fiber is fabricated using a fiber preform made by the furnace chemical vapor deposition method. The spectroscopic properties of the fiber are studied, and laser action at λ. 1450nm with an efficiency of 12% is demonstrated.

Original languageEnglish
Pages (from-to)2599-2601
Number of pages3
JournalOptics Letters
Volume36
Issue number13
DOIs
Publication statusPublished - 1 Jul 2011

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bismuth
furnaces
vapor deposition
silicon dioxide
fibers
preforms
lasers

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Zlenko, A. S., Dvoyrin, V. V., Mashinsky, V. M., Denisov, A. N., Iskhakova, L. D., Mayorova, M. S., ... Dianov, E. M. (2011). Furnace chemical vapor deposition bismuth-doped silica-core holey fiber. Optics Letters, 36(13), 2599-2601. https://doi.org/10.1364/OL.36.002599
Zlenko, A. S. ; Dvoyrin, V. V. ; Mashinsky, V. M. ; Denisov, A. N. ; Iskhakova, L. D. ; Mayorova, M. S. ; Medvedkov, O. I. ; Semenov, S. L. ; Vasiliev, S. A. ; Dianov, E. M. / Furnace chemical vapor deposition bismuth-doped silica-core holey fiber. In: Optics Letters. 2011 ; Vol. 36, No. 13. pp. 2599-2601.
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author = "Zlenko, {A. S.} and Dvoyrin, {V. V.} and Mashinsky, {V. M.} and Denisov, {A. N.} and Iskhakova, {L. D.} and Mayorova, {M. S.} and Medvedkov, {O. I.} and Semenov, {S. L.} and Vasiliev, {S. A.} and Dianov, {E. M.}",
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Zlenko, AS, Dvoyrin, VV, Mashinsky, VM, Denisov, AN, Iskhakova, LD, Mayorova, MS, Medvedkov, OI, Semenov, SL, Vasiliev, SA & Dianov, EM 2011, 'Furnace chemical vapor deposition bismuth-doped silica-core holey fiber', Optics Letters, vol. 36, no. 13, pp. 2599-2601. https://doi.org/10.1364/OL.36.002599

Furnace chemical vapor deposition bismuth-doped silica-core holey fiber. / Zlenko, A. S.; Dvoyrin, V. V.; Mashinsky, V. M.; Denisov, A. N.; Iskhakova, L. D.; Mayorova, M. S.; Medvedkov, O. I.; Semenov, S. L.; Vasiliev, S. A.; Dianov, E. M.

In: Optics Letters, Vol. 36, No. 13, 01.07.2011, p. 2599-2601.

Research output: Contribution to journalArticle

TY - JOUR

T1 - Furnace chemical vapor deposition bismuth-doped silica-core holey fiber

AU - Zlenko, A. S.

AU - Dvoyrin, V. V.

AU - Mashinsky, V. M.

AU - Denisov, A. N.

AU - Iskhakova, L. D.

AU - Mayorova, M. S.

AU - Medvedkov, O. I.

AU - Semenov, S. L.

AU - Vasiliev, S. A.

AU - Dianov, E. M.

PY - 2011/7/1

Y1 - 2011/7/1

N2 - A bismuth-doped-pure-silica holey fiber is fabricated using a fiber preform made by the furnace chemical vapor deposition method. The spectroscopic properties of the fiber are studied, and laser action at λ. 1450nm with an efficiency of 12% is demonstrated.

AB - A bismuth-doped-pure-silica holey fiber is fabricated using a fiber preform made by the furnace chemical vapor deposition method. The spectroscopic properties of the fiber are studied, and laser action at λ. 1450nm with an efficiency of 12% is demonstrated.

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JO - Optics Letters

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Zlenko AS, Dvoyrin VV, Mashinsky VM, Denisov AN, Iskhakova LD, Mayorova MS et al. Furnace chemical vapor deposition bismuth-doped silica-core holey fiber. Optics Letters. 2011 Jul 1;36(13):2599-2601. https://doi.org/10.1364/OL.36.002599