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Kvantovaya Elektronika, 1973, Number 6(18), Pages 31–37 (Mi qe5554)  

This article is cited in 15 scientific papers (total in 15 papers)

Investigation of the reactions of atomic iodine in a photodissociation laser using n-C3F7I and i-C3F7I molecules

S. V. Kuznetsova, A. I. Maslov
Abstract: A photodissociation iodine laser, employing n-C3F7I and i-C3F7I molecules, was used in a study of the kinetics of the reactions which accompanied the photolysis of these compounds. The results obtained confirmed the earlier observation that the recombination processes involving iodine atoms in the ground state I(52P3/2) had much larger rate constants than those of the corresponding reactions involving excited iodine atoms I*(52P1/2). A study was made of the influence of the structure of the radical R, formed by the photolysis of an RI molecule, on the rate constant of the recombination reaction R + R → R2. The rate constants of several chemical reactions involving iodine atoms and R radicals were determined and the influence of these constants on the energy characteristics of photodissociation lasers was analyzed.
Received: 30.03.1973
English version:
Soviet Journal of Quantum Electronics, 1974, Volume 3, Issue 6, Pages 468–471
DOI: https://doi.org/10.1070/QE1974v003n06ABEH005554
Document Type: Article
UDC: 621.378.33
PACS: 42.55.Ks, 42.60.Jf, 82.50.-m
Language: Russian


Citation: S. V. Kuznetsova, A. I. Maslov, “Investigation of the reactions of atomic iodine in a photodissociation laser using n-C3F7I and i-C3F7I molecules”, Kvantovaya Elektronika, 6 (1973), 31–37 [Sov J Quantum Electron, 3:6 (1974), 468–471]
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  • https://www.mathnet.ru/eng/qe/y1973/i6/p31
  • This publication is cited in the following 15 articles:
    1. K. Rohlena, J. Beránek, Landolt-Börnstein - Group VIII Advanced Materials and Technologies, 11, Laser Systems, Part 1, 2007, 341  crossref
    2. L.A. Schlie, R.D. Rathge, IEEE J. Quantum Electron., 31:6 (1995), 1069  crossref
    3. S. D. Herrera, L. A. Schlie, S. A. Richert, Review of Scientific Instruments, 59:11 (1988), 2386  crossref
    4. G. E. Hall, Sivaram Arepalli, P. L. Houston, J. R. Wiesenfeld, The Journal of Chemical Physics, 82:6 (1985), 2590  crossref
    5. K. Rohlena, K. Mašek, J. Kodymová, E. G. Balabanová, I. Paulička, B. Stefanov, Czech J Phys, 35:6 (1985), 643  crossref
    6. Z‐N. Gu, A. T. Young, P. L. Houston, Int J of Chemical Kinetics, 16:6 (1984), 669  crossref
    7. L. Schlie, R. Rathge, IEEE J. Quantum Electron., 20:10 (1984), 1187  crossref
    8. Günter Brederlow, Ernst Fill, Klaus J. Witte, Springer Series in Optical Sciences, 34, The High-Power Iodine Laser, 1983, 4  crossref
    9. H. Baker, T. King, IEEE J. Quantum Electron., 17:9 (1981), 1828  crossref
    10. Edward T. Macke, Heinrich Hellfeld, Ross A. McFarlane, Christopher C. Davis, The Journal of Chemical Physics, 69:10 (1978), 4564  crossref
    11. R.E. Beverly, M.C. Wong, Optics Communications, 20:1 (1977), 23  crossref
    12. W. Fuss, K. Hohla, Optics Communications, 18:4 (1976), 427  crossref
    13. C. Davis, R. Pirkle, R. McFarlane, G. Wolga, IEEE J. Quantum Electron., 12:6 (1976), 334  crossref
    14. R.E. Beverly, Optics Communications, 15:2 (1975), 204  crossref
    15. T. Donohue, J. R. Wiesenfeld, The Journal of Chemical Physics, 63:7 (1975), 3130  crossref
    Citing articles in Google Scholar: Russian citations, English citations
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    Квантовая электроника Quantum Electronics
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