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Kvantovaya Elektronika, 2013, Volume 43, Number 3, Pages 256–262 (Mi qe15132)  

This article is cited in 11 scientific papers (total in 11 papers)

Extreme light fields and their applications

Hybrid Er/Yb fibre laser system for generating few-cycle 1.6 to 2.0 mm pulses optically synchronised with high-power pulses near 1 μm

A. V. Andrianov, E. A. Anashkina, S. V. Murav'ev, A. V. Kim

Institute of Applied Physics, Russian Academy of Sciences, Nizhny Novgorod

Abstract: This paper presents the concept of fibre laser system design for generating optically synchronised femtosecond pulses at two, greatly differing wavelengths and reports experimental and numerical simulation studies of nonlinear conversion of femtosecond pulses at 1.5 μm wavelength in a dispersion-shifted fibre, with the generation of synchronised pulses in the ranges 1.6 – 2 and 1 – 1.1 μm. We describe a three-stage high-power fibre amplifier of femtosecond pulses at 1 μm and a hybrid Er/Yb fibre laser system that has enabled the generation of 12 fs pulses with a centre wavelength of 1.7 μm, synchronised with high-power (microjoule level) 250 fs pulses at 1.03 μm.

Keywords: few-cycle optical pulses, optical synchronisation of femtosecond pulses, nonlinear fibre optics, femtosecond fibre lasers and amplifiers.

Full text: PDF file (1031 kB)
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English version:
Quantum Electronics, 2013, 43:3, 256–262

Bibliographic databases:

PACS: 42.55.Wd, 42.60.By, 42.65.Re, 42.60.Jf
Received: 24.12.2012

Citation: A. V. Andrianov, E. A. Anashkina, S. V. Murav'ev, A. V. Kim, “Hybrid Er/Yb fibre laser system for generating few-cycle 1.6 to 2.0 mm pulses optically synchronised with high-power pulses near 1 μm”, Kvantovaya Elektronika, 43:3 (2013), 256–262 [Quantum Electron., 43:3 (2013), 256–262]

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  • http://mi.mathnet.ru/eng/qe/v43/i3/p256

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    Citing articles on Google Scholar: Russian citations, English citations
    Related articles on Google Scholar: Russian articles, English articles

    This publication is cited in the following articles:
    1. Quantum Electron., 43:3 (2013), 263–270  mathnet  crossref  adsnasa  isi  elib
    2. E. A. Anashkina, A. V. Andrianov, R. A. Akhmedzhanov, I. E. Ilyakov, A. V. Kim, Phys. Wave Phen, 22:3 (2014), 202  crossref  adsnasa  isi  elib  scopus
    3. Quantum Electron., 44:5 (2014), 458–464  mathnet  crossref  isi  elib
    4. M. Yu. Koptev, E. A. Anashkina, K. K. Bobkov, M. E. Likhachev, A. E. Levchenko, S. S. Aleshkina, S. L. Semjonov, A. N. Denisov, M. M. Bubnov, D. S. Lipatov, A. Yu. Laptev, A. N. Gur'yanov, A. V. Andrianov, S. V. Muravyev, A. V. Kim, Quantum Electron., 45:5 (2015), 443–450  mathnet  crossref  isi  elib  elib
    5. Bobkov K.K., Koptev M.Yu., Levchenko A.E., Aleshkina S.S., Semenov S.L., Denisov A.N., Bubnov M.M., Lipatov D.S., Laptev A.Yu., Guryanov A.N., Anashkina E.A., Muravyev S.V., Andrianov A.V., Kim A.V., Likhachev M.E., Fiber Lasers Xii: Technology, Systems, and Applications, Proceedings of SPIE, 9344, eds. Shaw L., Ballato J., Spie-Int Soc Optical Engineering, 2015, 93440S  crossref  isi  scopus
    6. Quantum Electron., 46:12 (2016), 1085–1088  mathnet  crossref  isi  elib
    7. Anashkina E.A., Andrianov A.V., Dorofeev V.V., Kim A.V., Appl. Optics, 55:17 (2016), 4522–4530  crossref  isi  elib  scopus
    8. Anashkina E.A., Andrianov A.V., Dorofeev V.V., Kim A.V., 2016 International Conference Laser Optics (Lo), IEEE, 2016  isi
    9. E. A. Anashkina, V A. Andrianov, M. Yu. Koptev, V A. Kim, 2017 Opto-Electronics and Communications Conference (Oecc) and Photonics Global Conference (Pgc), Opto-Electronics and Communications Conference-Oecc, IEEE, 2017  isi
    10. E. A. Anashkina, V. S. Shiryaev, M. Y. Koptev, B. S. Stepanov, S. V. Muravyev, J. Non-Cryst. Solids, 480:SI (2018), 43–50  crossref  isi  scopus
    11. E. A. Anashkina, A. V. Andrianov, M. Y. Koptev, S. Singh, A. V. Kim, 2018 International Conference Laser Optics (Iclo 2018), IEEE, 2018, 311  crossref  isi
  • Квантовая электроника Quantum Electronics
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