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Kvantovaya Elektronika, 1999, Volume 27, Number 3, Pages 239–240 (Mi qe1520)  

This article is cited in 10 scientific papers (total in 10 papers)

Lasers

Highly efficient cladding-pumped fibre laser based on an ytterbium-doped optical fibre and a fibre Bragg grating

A. S. Kurkova, V. I. Karpova, A. Yu. Laptevb, O. I. Medvedkova, E. M. Dianova, A. N. Gur'yanovb, S. A. Vasil'eva, V. M. Paramonova, V. N. Protopopova, A. A. Umnikovb, N. I. Vechkanovb, V. G. Artyushenkoc, J. Frahmc

a Fiber Optics Research Center of the Russian Academy of Sciences, Moscow
b Institute of Chemistry of High-Purity Substances RAS, Nizhnii Novgorod
c Advanced Photonic Systems, APhS GmbH, Berlin, Germany
Abstract: Ytterbium-ion-doped double-clad optical fibres were developed. The differential quantum efficiency of a diode-pumped fibre laser, fabricated on the basis of such optical fibres with a fibre Bragg grating, was 90%.
Received: 11.01.1999
English version:
Quantum Electronics, 1999, Volume 29, Issue 6, Pages 516–517
DOI: https://doi.org/10.1070/QE1999v029n06ABEH001520
Bibliographic databases:
Document Type: Article
PACS: 42.55.Wd, 42.55.Xe, 42.81.Qb, 42.79.Dj
Language: Russian


Citation: A. S. Kurkov, V. I. Karpov, A. Yu. Laptev, O. I. Medvedkov, E. M. Dianov, A. N. Gur'yanov, S. A. Vasil'ev, V. M. Paramonov, V. N. Protopopov, A. A. Umnikov, N. I. Vechkanov, V. G. Artyushenko, J. Frahm, “Highly efficient cladding-pumped fibre laser based on an ytterbium-doped optical fibre and a fibre Bragg grating”, Kvantovaya Elektronika, 27:3 (1999), 239–240 [Quantum Electron., 29:6 (1999), 516–517]
Linking options:
  • https://www.mathnet.ru/eng/qe1520
  • https://www.mathnet.ru/eng/qe/v27/i3/p239
  • This publication is cited in the following 10 articles:
    1. I. Kasik, I. Barton, M. Kamradek, O. Podrazky, J. Aubrecht, P. Varak, P. Peterka, P. Honzatko, D. Pysz, M. Franczyk, R. Buczynski, Optics Communications, 2024, 131437  crossref
    2. Rybaltovsky A.A. Butov O.V. Savel'ev E.A. Chamorovskii Yu.K., Tech. Phys. Lett., 42:5 (2016), 498–500  crossref  isi  elib  scopus
    3. Quantum Electron., 42:5 (2012), 417–419  mathnet  crossref  adsnasa  isi  elib
    4. Kurkov A.S., Kamynin V.A., Sholokhov E.M., Marakulin A.V., Laser Phys. Lett., 8:10 (2011), 754–757  crossref  mathscinet  adsnasa  isi  elib  scopus
    5. A.S. Kurkov, E.M. Sholokhov, O.I. Medvedkov, Laser Phys. Lett., 6:2 (2009), 135  crossref
    6. A. S. Kurkov, E. M. Sholokhov, V. M. Paramonov, A. F. Kosolapov, Quantum Electron., 38:10 (2008), 981–982  mathnet  mathnet  crossref  isi  scopus
    7. A.S. Kurkov, 1, Proceedings of CAOL 2005. Second International Conference on Advanced Optoelectronics and Lasers, 2005., 2005, 13  crossref
    8. Yuen H. Tsang, Terry A. King, Tristan Thomas, Christopher Udell, Mark C. Pierce, Optics Communications, 215:4-6 (2003), 381  crossref
    9. A.S. Kurkov, E.M. Dianov, O.I. Medvedkov, G.A. Ivanov, V.A. Aksenov, V.M. Paramonov, S.A. Vasiliev, E.V. Pershina, Conference Digest. 2000 Conference on Lasers and Electro-Optics Europe (Cat. No.00TH8505), 2000, 1  crossref
    10. V.I. Karpov, E.M. Dianov, A.S. Kurkov, V.M. Paramonov, V.N. Protopopov, M.P. Bachynski, W.R.L. Clements, OFC/IOOC . Technical Digest. Optical Fiber Communication Conference, 1999, and the International Conference on Integrated Optics and Optical Fiber Communication, 1999, 202  crossref
    Citing articles in Google Scholar: Russian citations, English citations
    Related articles in Google Scholar: Russian articles, English articles
    Квантовая электроника Quantum Electronics
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