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Kvantovaya Elektronika, 2013, Volume 43, Number 3, Pages 276–281 (Mi qe15029)  

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

Extreme light fields and their applications

Characteristics of yttrium oxide laser ceramics with additives

V. V. Osipov, V. I. Solomonov, A. N. Orlov, V. A. Shitov, R. N. Maksimov, A. V. Spirina

Institute of Electrophysics, Ural Branch, Russian Academy of Sciences, Ekaterinburg

Abstract: Neodymium- or ytterbium-doped laser ceramics with a disordered crystal-field structure formed by introduction of iso- and heterovalent elements into yttrium oxide are studied. It is shown that these additives broaden the spectral band of laser transitions, which makes it possible to use ceramics as active laser media emitting ultrashort pulses. Lasing was obtained in several samples of this ceramics. At the same time, it is shown that addition of zirconium and hafnium stimulates the Förster quenching of upper laser levels and pump levels.

Keywords: ceramics, laser oscillation, yttrium oxide, zirconium, hafnium, Förster quenching.

Full text: PDF file (1024 kB)
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English version:
Quantum Electronics, 2013, 43:3, 276–281

Bibliographic databases:

PACS: 81.05.Je, 42.70.Hj, 42.55.Rz, 78.60.Lc
Received: 24.10.2012
Revised: 25.01.2013

Citation: V. V. Osipov, V. I. Solomonov, A. N. Orlov, V. A. Shitov, R. N. Maksimov, A. V. Spirina, “Characteristics of yttrium oxide laser ceramics with additives”, Kvantovaya Elektronika, 43:3 (2013), 276–281 [Quantum Electron., 43:3 (2013), 276–281]

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  • http://mi.mathnet.ru/eng/qe15029
  • http://mi.mathnet.ru/eng/qe/v43/i3/p276

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    Citing articles on Google Scholar: Russian citations, English citations
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    This publication is cited in the following articles:
    1. Rekha Mann, Kiranmala Laishram, Renu Gautam, Suman Shakya, Neelam Malhan, Ceramics International, 2013  crossref  isi  scopus
    2. S. N. Bagaev, V. V. Osipov, V. L. Kuznetsov, V. I. Solomonov, V. A. Shitov, Russ Phys J, 2014  crossref  isi  elib  scopus
    3. V. I. Solomonov, A. V. Spirina, S. F. Konev, S. O. Cholakh, Opt. Spectrosc, 116:5 (2014), 793  crossref  adsnasa  isi  elib  scopus
    4. V. V. Osipov, V. I. Solomonov, A. V. Spirina, E. G. Vovkotrub, V. N. Strekalovskii, Opt. Spectrosc, 116:6 (2014), 946  crossref  adsnasa  isi  elib  scopus
    5. S. N. Bagayev, V. V. Osipov, E. V. Pestryakov, V. I. Solomonov, V. A. Shitov, J Appl Mech Tech Phy, 56:1 (2015), 150  crossref  mathscinet  adsnasa  isi  elib  scopus
    6. V. V. Osipov, V. I. Solomonov, V. A. Shitov, R. N. Maksimov, A. N. Orlov, Russ Phys J, 2015  crossref  isi  elib  scopus
    7. R.P. Yavetskiy, D.Yu. Kosyanov, A.G. Doroshenko, S.V. Parkhomenko, P.V. Mateychenko, Ceramics International, 2015  crossref  isi  scopus
    8. Quantum Electron., 45:9 (2015), 819–822  mathnet  crossref  isi  elib
    9. Kosyanov D.Yu., Yavetskiy R.P., Baumer V.N., Kopylov Yu.L., Kravchenko V.B., Vorona I.O., Cherednichenko A.I., Vovna V.I., Tolmachev A.V., J. Alloy. Compd., 686 (2016), 526–532  crossref  isi  scopus
    10. Shirinparvar Sh., Razavi R.Sh., Davar F., Loghman-Estarki M.R., Hajizadeh-Oghaz M., Ghorbani S., Ceram. Int., 42:9 (2016), 10551–10558  crossref  isi  elib  scopus
    11. Stanciu G., Gheorghe L., Voicu F., Hau S., Gheorghe C., Croitoru G., Enculescu M., Yavetskiy R.P., Ceram. Int., 45:3 (2019), 3217–3222  crossref  isi  scopus
  • Квантовая электроника Quantum Electronics
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