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Kvantovaya Elektronika, 1983, Volume 10, Number 3, Pages 473–496 (Mi qe4145)  

This article is cited in 12 scientific papers (total in 12 papers)

Radiation-optical properties of quartz glass fiber-optic waveguides (review)

E. M. Dianov, L. S. Kornienko, E. P. Nikitin, A. O. Rybaltovskii, V. B. Sulimov, P. V. Chernov
Abstract: A review is given of the radiation-optical properties of glass fiber-optic waveguides. Particular attention is paid to an analysis of radiation-induced absorption in multimode fiber-optic waveguides having pure and doped quartz glass cores. Dependences of the induced absorption on the dose, power, and type of radiation, on the temperature, the concentration of dopants and hydroxyl groups in the core, and on the wavelength and power of the probe radiation are discussed. An analysis is made of the kinetic curves of the changes in the induced absorption both during and after exposure to the radiation. Some models describing the effects of radiation bleaching and optical bleaching are analyzed. The propagation of a bleaching pulse through a radiation-darkened waveguide is examined.
Received: 26.01.1982
English version:
Soviet Journal of Quantum Electronics, 1983, Volume 13, Issue 3, Pages 274–289
DOI: https://doi.org/10.1070/QE1983v013n03ABEH004145
Bibliographic databases:
UDC: 535.8.666.189.2;666.11:621.039.533
PACS: 42.80.Lt, 42.80.Mv
Language: Russian


Citation: E. M. Dianov, L. S. Kornienko, E. P. Nikitin, A. O. Rybaltovskii, V. B. Sulimov, P. V. Chernov, “Radiation-optical properties of quartz glass fiber-optic waveguides (review)”, Kvantovaya Elektronika, 10:3 (1983), 473–496 [Sov J Quantum Electron, 13:3 (1983), 274–289]
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  • https://www.mathnet.ru/eng/qe4145
  • https://www.mathnet.ru/eng/qe/v10/i3/p473
  • This publication is cited in the following 12 articles:
    1. Xiaohui Yuan, Linjie Liu, Fanfan Niu, Xiaoyun Qi, Baitao An, Tadatomo Suga, Chenxi Wang, Chemical Engineering Journal, 498 (2024), 155421  crossref
    2. S. M. Dubrovskikh, O. V. Tkachev, V. P. Shukailo, A. N. Slobozhanin, A. N. Afanasiev, Tech. Phys., 69:6 (2024), 1540  crossref
    3. Dimpi Paul, Rajib Biswas, Sibasish Dutta, Handbook of Nanomaterials for Sensing Applications, 2021, 191  crossref
    4. M. Mirhabibi, A. Negarestani, M. A. Bolorizadeh, M. R. Rezaei, A. Akhound, J Radioanal Nucl Chem, 301:1 (2014), 207  crossref
    5. Keith E. Holbert, A. Sharif Heger, D. Michael Geschke, Ryan M. Stewart, IEEE Trans. Nucl. Sci., 55:6 (2008), 3515  crossref
    6. N. Akchurin, M. Kh. Ashurov, M. I. Baydjanov, E. M. Gasanov, N. Ivanov, I. Nuritdinov, I. R. Rustamov, A. N. Safarov, U. S. Salikhbayev, R. D. Suleymanov, B. S. Yuldashev, IEEE Trans. Nucl. Sci., 54:5 (2007), 1812  crossref
    7. Sandra Kosinski, John B. MacChesney, Kirk-Othmer Encyclopedia of Chemical Technology, 2000  crossref
    8. J.A. Abate, J.R. Simpson, D.L. Brownlow, D.J. Digiovanni, S. Kannan, M.J. Luvalle, P.J. Lemaire, A.J. Stentz, 2, MILCOM 97 MILCOM 97 Proceedings, 1997, 936  crossref
    9. G. Breuze, H. Fanet, J. Serre, D. Colas, E. Garnero, T. Hamet, RADECS 93. Second European Conference on Radiation and its Effects on Components and Systems (Cat. No.93TH0616-3), 1994, 272  crossref
    10. Robert N. Schwartz, G. Richard Blair, Journal of Applied Physics, 65:2 (1989), 710  crossref
    11. R.H. West, J. Lightwave Technol., 6:2 (1988), 155  crossref
    12. E.J. Friebele, C.G. Askins, M.E. Gingerich, K.J. Long, Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms, 1:2-3 (1984), 355  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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