• Acta Optica Sinica
  • Vol. 26, Issue 12, 1866 (2006)
[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]. Dependence of CH Molecular Beam Intensity on Ratio of CH4Buffering in Helium and Vibration and Rotation Temperatures Calculation of CH(A2Δ)[J]. Acta Optica Sinica, 2006, 26(12): 1866 Copy Citation Text show less
    References

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    [2] Kalemos A., Mavridis A.. An accurate description of the ground and excited states of CH[J]. J. Chem. Phys., 1999, 111(21): 9536~9547

    [3] Luque J., Crosley D. R.. Electronic transition moment and rotational transition probabilities in CH. I. A2Δ-X2Π system[J]. J. Chem. Phys., 1996, 104(6): 2146~2155

    [4] Bethlem H. L., Crompvoets F. M. H., Jongma R. T. et al.. Deceleration and trapping of ammonia using time-varying electric field[J]. Phys. Rev. A, 2002, 65(5): 053416-1~053416-20

    [5] Luque J., Crosley D. R.. LIFBASE: Database and Spectral Simulation Program (Version 2.0.53). SRI International Report MP 99-009, 1999

    [6] Lewandowski H. J., Hudson Eric R., Bochinski J. R. et al.. A pulsed, low-temperature beam of supersonically cooled free radical OH molecules[J]. Chem. Phys. Lett., 2004, 395: 53~57

    [9] Kirikov A. V., Ryzhov V. V., Suslov A. I.. Kinetics of free radicals in the plasma of a spark discharge in methane[J]. Technol. Phys. Lett., 1999, 25(10): 794~795

    [10] Prince J. F., Collins C. B., Robertson W. W.. Spectra excited in an argon afterglow[J]. J. Chem. Phys., 1964, 40(9): 2619~2626

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    [in Chinese], [in Chinese], [in Chinese], [in Chinese]. Dependence of CH Molecular Beam Intensity on Ratio of CH4Buffering in Helium and Vibration and Rotation Temperatures Calculation of CH(A2Δ)[J]. Acta Optica Sinica, 2006, 26(12): 1866
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