• Chinese Journal of Quantum Electronics
  • Vol. 22, Issue 6, 844 (2005)
[in Chinese]*, [in Chinese], [in Chinese], [in Chinese], and [in Chinese]
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  • [in Chinese]
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    [in Chinese], [in Chinese], [in Chinese], [in Chinese], [in Chinese]. Measurement for chlorine utilization in a minitype singlet oxygen generator[J]. Chinese Journal of Quantum Electronics, 2005, 22(6): 844 Copy Citation Text show less
    References

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    [4] Rittenhouse T L, Phipps S P, Helms C A. Performance of a high-efficiency 5 cm gain length supersonic chemical oxygen-iodine laser [J]. IEEE J. Quantum Electron, 1999, 35(6): 857-866.

    [7] Zhao W, Duo L, Sang F, et al. Measurements of the yield and chlorine utilization of singlet oxygen generator by use of Raman spectroscopy [J]. Appl. Opt., 2003, 42(18): 3524-3527.

    [9] Hurlock S C. COIL technology development at Boeing [J]. Proc. SPIE, 2002, 4631: 101-115.

    [10] Yang T T, Bhowmik A, Burde D, et al. 20 kW nitrogen diluent chemical oxygen-iodine laser [J]. Proc. SPIE,2002, 4760: 537-549.

    [12] Gibson G E, Bayliss N S. Variation with temperature of the continuous absorption spectrum of diatomic molecules:part Ⅰ. experimental, the absorption spectrum of chlorine [J]. Phys. Rev., 1933, 44(8): 188-192.

    [15] Mathieson L, Rees A L G. Electronic states and potential energy diagram of the iodine molecule [J]. J. Chem.Phys., 1956, 25(4): 753-761.

    [16] Schumb W C, Satterfield C N, et al. Hydrogen Peroxide [M]. New York: Reinhold Publishing Corporation, 1955.189-309.

    [in Chinese], [in Chinese], [in Chinese], [in Chinese], [in Chinese]. Measurement for chlorine utilization in a minitype singlet oxygen generator[J]. Chinese Journal of Quantum Electronics, 2005, 22(6): 844
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